2,529 results on '"Voskanyan A"'
Search Results
152. Classifiers creation ways and development perspectives of commercial and municipal housing
- Author
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Sargsyan, E.M., primary, Yeghiyan, L.K., additional, and Voskanyan, V.P., additional
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- 2021
- Full Text
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153. High-risk additional chromosomal abnormalities at low blast counts herald death by CML
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Hehlmann, Rüdiger, Voskanyan, Astghik, Lauseker, Michael, Pfirrmann, Markus, Kalmanti, Lida, Rinaldetti, Sebastien, Kohlbrenner, Katharina, Haferlach, Claudia, Schlegelberger, Brigitte, Fabarius, Alice, Seifarth, Wolfgang, Spieß, Birgit, Wuchter, Patrick, Krause, Stefan, Kolb, Hans-Jochem, Neubauer, Andreas, Hossfeld, Dieter K., Nerl, Christoph, Gratwohl, Alois, Baerlocher, Gabriela M., Burchert, Andreas, Brümmendorf, Tim H., Hasford, Jörg, Hochhaus, Andreas, Saußele, Susanne, and Baccarani, Michele
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- 2020
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154. ALPPS for Locally Advanced Intrahepatic Cholangiocarcinoma: Did Aggressive Surgery Lead to the Oncological Benefit? An International Multi-center Study
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Li, Jun, Moustafa, Mohamed, Linecker, Michael, Lurje, Georg, Capobianco, Ivan, Baumgart, Janine, Ratti, Francesca, Rauchfuss, Falk, Balci, Deniz, Fernandes, Eduardo, Montalti, Roberto, Robles-Campos, Ricardo, Bjornsson, Bergthor, Topp, Stefan A., Fronek, Jiri, Liu, Chao, Wahba, Roger, Bruns, Christiane, Brunner, Stefan M., Schlitt, Hans J., Heumann, Asmus, Stüben, Björn-Ole, Izbicki, Jakob R., Bednarsch, Jan, Gringeri, Enrico, Fasolo, Elisa, Rolinger, Jens, Kristek, Jakub, Hernandez-Alejandro, Roberto, Schnitzbauer, Andreas, Nuessler, Natascha, Schön, Michael R., Voskanyan, Sergey, Petrou, Athanasios S., Hahn, Oszkar, Soejima, Yuji, Vicente, Emilio, Castro-Benitez, Carlos, Adam, René, Tomassini, Federico, Troisi, Roberto Ivan, Kantas, Alexandros, Oldhafer, Karl Juergen, Ardiles, Victoria, de Santibanes, Eduardo, Malago, Massimo, Clavien, Pierre-Alain, Vivarelli, Marco, Settmacher, Utz, Aldrighetti, Luca, Neumann, Ulf, Petrowsky, Henrik, Cillo, Umberto, Lang, Hauke, and Nadalin, Silvio
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- 2020
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155. Demonstration of a novel technique to measure two-photon exchange effects in elastic $e^\pm p$ scattering
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Moteabbed, M., Niroula, M., Raue, B. A., Weinstein, L. B., Adikaram, D., Arrington, J., Brooks, W. K., Lachniet, J., Rimal, Dipak, Ungaro, M., Adhikari, K. P., Aghasyan, M., Amaryan, M. J., Pereira, S. Anefalos, Avakian, H., Ball, J., Baltzell, N. A., Battaglieri, M., Batourine, V., Bedlinskiy, I., Bennett, R. P., Biselli, A. S., Bono, J., Boiarinov, S., Briscoe, W. J., Burkert, V. D., Carman, D. S., Celentano, A., Chandavar, S., Cole, P. L., Collins, P., Contalbrigo, M., Cortes, O., Crede, V., D'Angelo, A., Dashyan, N., De Vita, R., De Sanctis, E., Deur, A., Djalali, C., Doughty, D., Dupre, R., Egiyan, H., Fassi, L. El, Eugenio, P., Fedotov, G., Fegan, S., Fersch, R., Fleming, J. A., Gevorgyan, N., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Goetz, J. T., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Guler, N., Guo, L., Hafidi, K., Hakobyan, H., Hanretty, C., Harrison, N., Heddle, D., Hicks, K., Ho, D., Holtrop, M., Hyde, C. E., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jo, H. S., Joo, K., Keller, D., Khandaker, M., Kim, A., Klein, F. J., Koirala, S., Kubarovsky, A., Kubarovsky, V., Kuhn, S. E., Kuleshov, S. V., Lewis, S., Lu, H. Y., MacCormick, M., MacGregor, I . J . D., Martinez, D., Mayer, M., McKinnon, B., Mineeva, T., Mirazita, M., Mokeev, V., Montgomery, R. A., Moriya, K., Moutarde, H., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Nasseripour, R., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L. L., Paremuzyan, R., Park, K., Park, S., Phelps, E., Phillips, J. J., Pisano, S., Pogorelko, O., Pozdniakov, S., Price, J. W., Procureur, S., Protopopescu, D., Puckett, A. J. R., Ripani, M., Rosner, G., Rossi, P., Sabatié, F., Saini, M. S., Salgado, C., Schott, D., Schumacher, R. A., Seder, E., Seraydaryan, H., Sharabian, Y. G., Smith, E. S., Smith, G. D., Sober, D. I., Sokhan, D., Stepanyan, S., Strauch, S., Tang, W., Taylor, C. E., Tian, Ye, Tkachenko, S., Voskanyan, H., Voutier, E., Walford, N. K., Wood, M. H., Zachariou, N., Zana, L., Zhang, J., Zhao, Z. W., and Zonta, I.
- Subjects
Nuclear Experiment - Abstract
The discrepancy between proton electromagnetic form factors extracted using unpolarized and polarized scattering data is believed to be a consequence of two-photon exchange (TPE) effects. However, the calculations of TPE corrections have significant model dependence, and there is limited direct experimental evidence for such corrections. We present the results of a new experimental technique for making direct $e^\pm p$ comparisons, which has the potential to make precise measurements over a broad range in $Q^2$ and scattering angles. We use the Jefferson Lab electron beam and the Hall B photon tagger to generate a clean but untagged photon beam. The photon beam impinges on a converter foil to generate a mixed beam of electrons, positrons, and photons. A chicane is used to separate and recombine the electron and positron beams while the photon beam is stopped by a photon blocker. This provides a combined electron and positron beam, with energies from 0.5 to 3.2 GeV, which impinges on a liquid hydrogen target. The large acceptance CLAS detector is used to identify and reconstruct elastic scattering events, determining both the initial lepton energy and the sign of the scattered lepton. The data were collected in two days with a primary electron beam energy of only 3.3 GeV, limiting the data from this run to smaller values of $Q^2$ and scattering angle. Nonetheless, this measurement yields a data sample for $e^\pm p$ with statistics comparable to those of the best previous measurements. We have shown that we can cleanly identify elastic scattering events and correct for the difference in acceptance for electron and positron scattering. The final ratio of positron to electron scattering: $R=1.027\pm0.005\pm0.05$ for $
=0.206$ GeV$^2$ and $0.830\leq \epsilon\leq 0.943$.
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- 2013
- Full Text
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156. On the existence of classical solutions for stationary extended mean field games
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Gomes, Diogo A., Patrizi, Stefania, and Voskanyan, Vardan
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Mathematics - Analysis of PDEs - Abstract
In this paper we consider extended stationary mean field games, that is mean-field games which depend on the velocity field of the players. We prove various a-priori estimates which generalize the results for quasi-variational mean field games in [GPSM12]. In addition we use adjoint method techniques to obtain higher regularity bounds. Then we establish existence of smooth solutions under fairly general conditions by applying the continuity method. When applied to standard stationary mean-field games as in [LL06a], [GSM11] or [GPSM12] this paper yields various new estimates and regularity properties not available previously. We discuss additionally several examples where existence of classical solutions can be proved.
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- 2013
157. Extended deterministic mean-field games
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Gomes, Diogo A. and Voskanyan, Vardan K.
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Mathematics - Analysis of PDEs - Abstract
In this paper, we consider mean-field games where the interaction of each player with the mean-field takes into account not only the states of the players but also their collective behavior, To do so, we develop a random variable framework that is particularly convenient for these problems. We prove an existence result for extended mean-field games and establish uniqueness conditions. In the last section, we consider the Master Equation and discuss properties of its solutions.
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- 2013
158. Hard Two-body Photodisintegration of 3He
- Author
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Pomerantz, I., Ilieva, Y., Gilman, R., Higinbotham, D. W., Piasetzky, E., Strauch, S., Adhikari, K. P., Aghasyan, M., Allada, K., Amaryan, M. J., Pereira, S. Anefalos, Anghinolfi, M., Baghdasaryan, H., Ball, J., Baltzell, N. A., Battaglieri, M., Batourine, V., Beck, A., Beck, S., Bedlinskiy, I., Berman, B. L., Biselli, A. S., Boeglin, W., Bono, J., Bookwalter, C., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bubis, N., Burkert, V., Camsonne, A., Canan, M., Carman, D. S., Celentano, A., Chandavar, S., Charles, G., Chirapatpimol, K., Cisbani, E., Cole, P. L., Contalbrigo, M., Crede, V., Cusanno, F., D'Angelo, A., Daniel, A., Dashyan, N., de Jager, C. W., De Vita, R., De Sanctis, E., Deur, A., Djalali, C., Dodge, G. E., Doughty, D., Dupre, R., Dutta, C., Egiyan, H., Alaoui, A. El, Fassi, L. El, Eugenio, P., Fedotov, G., Fegan, S., Fleming, J. A., Fradi, A., Garibaldi, F., Geagla, O., Gevorgyan, N., Giovanetti, K. L., Girod, F. X., Glister, J., Goetz, J. T., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guegan, B., Guidal, M., Guo, L., Hafidi, K., Hakobyan, H., Harrison, N., Heddle, D., Hicks, K., Ho, D., Holtrop, M., Hyde, C. E., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jiang, X., Jo, H. S., Joo, K., Katramatou, A. T., Keller, D., Khandaker, M., Khetarpal, P., Khrosinkova, E., Kim, A., Kim, W., Klein, F. J., Koirala, S., Kubarovsky, A., Kubarovsky, V., Kuleshov, S. V., Kvaltine, N. D., Lee, B., LeRose, J. J., Lewis, S., Lindgren, R., Livingston, K., Lu, H. Y., MacGregor, I. J. D., Mao, Y., Martinez, D., Mayer, M., McCullough, E., McKinnon, B., Meekins, D., Meyer, C. A., Michaels, R., Mineeva, T., Mirazita, M., Moffit, B., Mokeev, V., Montgomery, R. A., Moutarde, H., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Nasseripour, R., Nepali, C. S., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L. L., Paremuzyan, R., Park, K., Park, S., Petratos, G. G., Phelps, E., Pisano, S., Pogorelko, O., Pozdniakov, S., Procureur, S., Protopopescu, D., Puckett, A. J. R., Qian, X., Qiang, Y., Ricco, G., Rimal, D., Ripani, M., Ritchie, B. G., Rodriguez, I., Ron, G., Rosner, G., Rossi, P., Sabatie, F., Saha, A., Saini, M. S., Sarty, A. J., Sawatzky, B., Saylor, N. A., Schott, D., Schulte, E., Schumacher, R. A., Seder, E., Seraydaryan, H., Shneor, R., Smith, G. D., Sokhan, D., Sparveris, N., Stepanyan, S. S., Stepanyan, S., Stoler, P., Subedi, R., Sulkosky, V., Taiuti, M., Tang, W., Taylor, C. E., Tkachenko, S., Ungaro, M., Vernarsky, B., Vineyard, M. F., Voskanyan, H., Voutier, E., Walford, N. K., Wang, Y., Watts, D. P., Weinstein, L. B., Weygand, D. P., Wojtsekhowski, B., Wood, M. H., Yan, X., Yao, H., Zachariou, N., Zhan, X., Zhang, J., Zhao, Z. W., Zheng, X., and Zonta, I.
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Nuclear Experiment - Abstract
We have measured cross sections for the gamma+3He->p+d reaction at photon energies of 0.4 - 1.4 GeV and a center-of-mass angle of 90 deg. We observe dimensional scaling above 0.7 GeV at this center-of-mass angle. This is the first observation of dimensional scaling in the photodisintegration of a nucleus heavier than the deuteron.
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- 2013
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159. Transverse Polarization of $\Sigma^{+}(1189)$ in Photoproduction on a Hydrogen Target in CLAS
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Nepali, C. S., Amaryan, M., Adhikari, K. P., Aghasyan, M., Pereira, S. Anefalos, Baghdasaryan, H., Ball, J., Battaglieri, M., Batourine, V., Bedlinskiy, I., Biselli, A. S., Bono, J., Boiarinov, S., Briscoe, W. J., Bültmann, S., Burkert, V. D., Carman, D. S., Celentano, A., Chandavar, S., Charles, G., Cole, P. L., Collins, P., Contalbrigo, M., Crede, V., Dashyan, N., De Vita, R., De Sanctis, E., Deur, A., Djalali, C., Doughty, D., Dupre, R., Alaoui, A. El, Fassi, L. El, Fedotov, G., Fegan, S., Fersch, R., Fleming, J. A., Gabrielyan, M. Y., Gevorgyan, N., Giovanetti, K. L., Girod, F. X., Glazier, D. I., Goetz, J. T., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Guler, N., Hafidi, K., Hakobyan, H., Hanretty, C., Harrison, N., Heddle, D., Hicks, K., Ho, D., Holtrop, M., Hyde, C. E., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jo, H. S., Keller, D., Khandaker, M., Khetarpal, P., Kim, A., Kim, W., Klein, A., Klein, F. J., Koirala, S., Kubarovsky, V., Kuhn, S. E., Kuleshov, S. V., Kvaltine, N. D., Lu, H. Y., MacGregor, I . J . D., Markov, N., Mayer, M., McKinnon, B., Mineeva, T., Mirazita, M., Mokeev, V., Montgomery, R. A., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L. L., Paremuzyan, R., Park, K., Park, S., Pasyuk, E., Phelps, E., Phillips, J. J., Pisano, S., Pogorelko, O., Pozdniakov, S., Price, J. W., Procureur, S., Protopopescu, D., Puckett, A. J. R., Raue, B. A., Rimal, D., Ripani, M., Ritchie, B. G., Rosner, G., Rossi, P., Sabatié, F., Saini, M. S., Salgado, C., Schott, D., Schumacher, R. A., Seder, E., Seraydaryan, H., Sharabian, Y. G., Smith, G. D., Sober, D. I., Sokhan, D., Stepanyan, S. S., Stepanyan, S., Strakovsky, I. I., Strauch, S., Taiuti, M., Tang, W., Taylor, C. E., Tian, Ye, Tkachenko, S., Torayev, B., Vernarsky, B., Vlassov, A. V., Voskanyan, H., Voutier, E., Walford, N. K., Watts, D. P., Weinstein, L. B., Weygand, D. P., Zachariou, N., Zana, L., Zhang, J., Zhao, Z. W., and Zonta, I.
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Nuclear Experiment - Abstract
Experimental results on the $\Sigma^+(1189)$ hyperon transverse polarization in photoproduction on a hydrogen target using the CLAS detector at Jefferson laboratory are presented. The $\Sigma^+(1189)$ was reconstructed in the exclusive reaction $\gamma+p\rightarrow K^{0}_{S} + \Sigma^+(1189)$ via the $\Sigma^{+} \to p \pi^{0}$ decay mode. The $K^{0}_S$ was reconstructed in the invariant mass of two oppositely charged pions with the $\pi^0$ identified in the missing mass of the detected $p\pi^+\pi^-$ final state. Experimental data were collected in the photon energy range $E_{\gamma}$ = 1.0-3.5 GeV ($\sqrt{s}$ range 1.66-2.73 GeV). We observe a large negative polarization of up to 95%. As the mechanism of transverse polarization of hyperons produced in unpolarized photoproduction experiments is still not well understood, these results will help to distinguish between different theoretical models on hyperon production and provide valuable information for the searches of missing baryon resonances., Comment: pages 11
- Published
- 2013
- Full Text
- View/download PDF
160. Contributors
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Axel Adams, Clara Affun-Adegbulu, Rakan S. Al-Rasheed, Yasser A. Alaska, Abdulaziz D. Aldawas, Saleh Ali Alesa, George A. Alexander, Abdullah Ahmed Alhadhira, Fahad Saleha Alhajjaj, Hazem H. Alhazmi, Zainab Abdullah Alhussaini, Nawfal Aljerian, Majed Aljohani, Khaldoon H. AlKhaldi, Eyad Alkhattabi, Bryant Allen, Austin Almand, Moza M. Alnoaimi, Mohammad Alotaibi, Evan Avraham Alpert, Yasir A. Alrusayni, Mai Alshammari, Loui K. Alsulimani, Siraj Amanullah, Arian Anderson, David Arastehmanesh, Ali Ardalan, Killiam A. Argote-Araméndiz, Andrew W. Artenstein, Olivia E. Bailey, Russell Baker, Satchit Balsari, Gregory T. Banner, Fermin Barrueto M, Susan A. Bartels, Joshua J. Baugh, Frederic Berg, Vijai Bhola, William Binder, Michelangelo Bortolin, Vincent Bounes, Michael Bouton, Natasha Brown, Frederick M. Burkle, Jr, Lynn Barkley Burnett, Michele M. Burns, Nicholas V. Cagliuso, Sr, John Cahill, David W. Callaway, Duane C. Caneva, Srihari Cattamanchi, Alejandra Caycedo, Edward W. Cetaruk, Sneha Chacko, James C. Chang, Crystal Chiang, David T. Chiu, Gregory R. Ciottone, Jonathan Peter Ciottone, Melissa A. Ciottone, Robert A. Ciottone, Robert G. Ciottone, Vigen G. Ciottone, Alexander Clark, Jonathan Clark, Sean P. Conley, Joanne Cono, Arthur Cooper, Scott B. Cormier, Michael F. Court, Cord W. Cunningham, Fabrice Czarnecki, Supriya Davis, Timothy E. Davis, Gerard DeMers, Sharon Dilling, Ahmadreza Djalali, Timothy Donahoe, Joseph Donahue, Caleb Dresser, Jason Dylik, Benjamin Easter, Alexander Eastman, Laura Ebbeling, Chigozie Emetarom, Nir Eyal, Andrew J. Eyre, David J. Freeman, Franklin D. Friedman, Christie Fritz, Frederick Fung, Fiona E. Gallahue, Stephanie Chow Garbern, Mark E. Gebhart, William A. Gluckman, Craig Goolsby, Robert M. Gougelet, Fredrik Granholm, P. Gregg Greenough, Jennifer O. Grimes, Steve Grosse, Shamai A. Grossman, John T. Groves Jr, Tee L. Guidotti, George Guo, Sarah Haessler, Matthew M. Hall, John W. Hardin, Mason Harrell, Alexander Hart, MD, Melissa Harvey, Attila J. Hertelendy, PhD, Nishanth S. Hiremath, Jordan Hitchens, Christopher P. Holstege, Simon T. Horne, Steven Horng, Amer Hosin, Hans R. House, Pier Luigi Ingrassia, Fadi S. Issa, Irving 'Jake' Jacoby, Rajnish Jaiswal, Gregory Jay, J. Lee Jenkins, Josh W. Joseph, Shane Kappler, Mark E. Keim, Julie Kelman, Andrew R. Ketterer, Anas A. Khan, Ramu Kharel, Chetan U. Kharod, Thomas D. Kirsch, Anita Knopov, Max Kravitz, J. Austin Lee, Jay Lemery, Evan L. Leventhal, Jesse Loughlin, Stephanie Ludy, Brian J. Maguire, Selwyn E. Mahon, Paul M. Maniscalco, Philip Manners, Leonard Jay Marcus, Colton Margus, Taha M. Masri, Jeff Matthews, Sean D. McKay, Zeke J. McKinney, Robert K. McLellan, Eric J. McNulty, Faroukh Mehkri, Mandana Mehta, Rebecca A. Mendelsohn, Ofer Merin, Andrew Milsten, Dale M. Molé, Michael Sean Molloy, Ilaria Morelli, Jerry L. Mothershead, John Mulhern, Nicole F. Mullendore, Nicholas J. Musisca, Sonya Naganathan, Larry A. Nathanson, Erica L. Nelson, Lewis S. Nelson, Bradford A. Newbury, Kimberly Newbury, Ansley O’Neill, Robert Obernier, Jacopo M. Olagnero, Leonie Oostrom-Shah, Catherine Y. Ordun, Scott Parazynski, Andrew J. Park, Robert Partridge, Jeffrey S, James P. Phillips, Emily Pinter, David P. Polatty IV, Patrick Popieluszko, William Porcaro, Lawrence Proano, Peter B. Pruitt, Moiz Qureshi, Luca Ragazzoni, Murtaza Rashid, Paul Patrick Rega, Michael J. Reilly, Marc C. Restuccia, James J. Rifino, Paul M. Robben, Joy L. Rosenblatt, Kevin M. Ryan, Heather Rybasack-Smith, Richard James Salway, Daniel Samo, Leon D. Sanchez, Shawn M. Sanford, Ritu R. Sarin, Deesha Sarma, Jesse Schacht, Valarie Schwind, Geoffrey L. Shapiro, Joshua Sheehan, Brian Shreve, Grigor Simonyan, Devin M. Smith, E. Reed Smith, MD, Jack E. Smith, MA, Montray Smith, Peter B. Smulowitz, Angela M. Snyder, Joshua J. Solano, Bryan A. Stenson, Charles Stewart, M. Kathleen Stewart, Patrick Sullivan, Jared S. Supple, Derrick Tin, Jonathan Harris Valente, Kathryn M. Vear, P.R. Vidyalakshmi, Faith Vilas, Gary M. Vilke, Janna H. Villano, Amalia Voskanyan, C. James Watson, Nancy Weber, Scott G. Weiner, Brielle Weinstein, Eric S. Weinstein, Jordan R. Werner, Roy Karl Werner, MD, James D. Whitledge, Sage W. Wiener, Lauren Wiesner, Kenneth A. Williams, Robyn Wing, Richard E. Wolfe, Wendy Hin-Wing Wong, Robert Woolard, Prasit Wuthisuthimethawee, and Nadine A. Youssef
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- 2024
161. Displaced Populations
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Amalia Voskanyan, Grigor Simonyan, and John Cahill
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- 2024
162. Model of Individual Human Behavior in Health Care Safety Management System
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Voskanyan, Yuriy, primary, Kidalov, Fedor, additional, Shikina, Irina, additional, Kurdyukov, Sergey, additional, and Andreeva, Olga, additional
- Published
- 2021
- Full Text
- View/download PDF
163. Latent Failures of the Individual Human Behavior as a Root Cause of Medical Errors
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Voskanyan, Yuriy, primary, Shikina, Irina, additional, Kidalov, Fedor, additional, Musaeva, Saida, additional, and Davidov, David, additional
- Published
- 2021
- Full Text
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164. 3D δ-MnO2 nanostructure with ultralarge mesopores as high-performance lithium-ion battery anode fabricated via colloidal solution combustion synthesis
- Author
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Voskanyan, Albert A., Ho, Ching-Kit, and Chan, Kwong Yu
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- 2019
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165. Five-Year, Prospective, Randomized, Multi-Surgeon Trial of Two Trabecular Bypass Stents versus Prostaglandin for Newly Diagnosed Open-Angle Glaucoma
- Author
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Fechtner, Robert D., Voskanyan, Lilit, Vold, Steven D., Tetz, Manfred, Auffarth, Gerd, Masood, Imran, Au, Leon, Khouri, Albert S., Ahmed, Iqbal Ike K., and Saheb, Hady
- Published
- 2019
- Full Text
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166. Near Threshold Neutral Pion Electroproduction at High Momentum Transfers and Generalized Form Factors
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Khetarpal, P., Stoler, P., Aznauryan, I. G., Kubarovsky, V., Adhikari, K. P., Adikaram, D., Aghasyan, M., Amaryan, M. J., Anderson, M. D., Pereira, S. Anefalos, Anghinolfi, M., Avakian, H., Baghdasaryan, H., Ball, J., Baltzell, N. A., Battaglieri, M., Batourine, V., Bedlinskiy, I., Biselli, A. S., Bono, J., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Burkert, V. D., Carman, D. S., Celentano, A., Charles, G., Cole, P. L., Contalbrigo, M., Crede, V., D'Angelo, A., Dashyan, N., De Vita, R., De Sanctis, E., Deur, A., Djalali, C., Doughty, D., Dugger, M., Dupre, R., Egiyan, H., Alaoui, A. El, Fassi, L. El, Eugenio, P., Fedotov, G., Fegan, S., Fersch, R., Fleming, J. A., Fradi, A., Gabrielyan, M. Y., Garçon, M., Gevorgyan, N., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Goetz, J. T., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guegan, B., Guidal, M., Guo, L., Hafidi, K., Hakobyan, H., Hanretty, C., Harrison, N., Hicks, K., Ho, D., Holtrop, M., Hyde, C. E., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jo, H. S., Joo, K., Keller, D., Khandaker, M., Kim, A., Kim, W., Klein, F. J., Koirala, S., Kubarovsky, A., Kuleshov, S. V., Kvaltine, N. D., Lewis, S., Livingston, K., Lu, H. Y., MacGregor, I. J. D., Mao, Y., Martinez, D., Mayer, M., McKinnon, B., Meyer, C. A., Mineeva, T., Mirazita, M., Mokeev, V., Montgomery, R. A., Moutarde, H., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Nasseripour, R., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L. L., Paremuzyan, R., Park, K., Park, S., Pasyuk, E., Phelps, E., Phillips, J. J., Pisano, S., Pogorelko, O., Pozdniakov, S., Price, J. W., Procureur, S., Protopopescu, D., Puckett, A. J. R., Raue, B. A., Ricco, G., Rimal, D., Ripani, M., Rosner, G., Rossi, P., Sabatié, F., Saini, M. S., Salgado, C., Saylor, N. A., Schott, D., Schumacher, R. A., Seder, E., Seraydaryan, H., Sharabian, Y. G., Smith, G. D., Sober, D. I., Sokhan, D., Stepanyan, S. S., Stepanyan, S., Strakovsky, I. I., Strauch, S., Taiuti, M., Tang, W., Taylor, C. E., Tkachenko, S., Ungaro, M., Vernarsky, B., Voskanyan, H., Voutier, E., Walford, N. K., Weinstein, L. B., Weygand, D. P., Wood, M. H., Zachariou, N., Zhang, J., Zhao, Z. W., and Zonta, I.
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Nuclear Experiment - Abstract
We report the measurement of near threshold neutral pion electroproduction cross sections and the extraction of the associated structure functions on the proton in the kinematic range $Q^2$ from 2 to 4.5 GeV$^2$ and $W$ from 1.08 to 1.16 GeV. These measurements allow us to access the dominant pion-nucleon s-wave multipoles $E_{0+}$ and $S_{0+}$ in the near-threshold region. In the light-cone sum-rule framework (LCSR), these multipoles are related to the generalized form factors $G_1^{\pi^0 p}(Q^2)$ and $G_2^{\pi^0 p}(Q^2)$. The data are compared to these generalized form factors and the results for $G_1^{\pi^0 p}(Q^2)$ are found to be in good agreement with the LCSR predictions, but the level of agreement with $G_2^{\pi^0 p}(Q^2)$ is poor., Comment: 17 pages, 18 figures, Journal article (Physical Review C)
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- 2012
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167. Measurement of Exclusive $\pi^0$ Electroproduction Structure Functions and their Relationship to Transversity GPDs
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CLAS Collaboration, Bedlinskiy, I., Kubarovsky, V., Niccolai, S., Stoler, P., Adhikari, K. P., Aghasyan, M., Amaryan, M. J., Anghinolfi, M., Avakian, H., Baghdasaryan, H., Ball, J., Baltzell, N. A., Battaglieri, M., Bennett, R. P., Biselli, A. S., Bookwalter, C., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Burkert, V. D., Carman, D. S., Celentano, A., Chandavar, S., Charles, G., Contalbrigo, M., Crede, V., D'Angelo, A., Daniel, A., Dashyan, N., De Vita, R., De Sanctis, E., Deur, A., Djalali, C., Doughty, D., Dupre, R., Egiyan, H., Alaoui, A. El, Fassi, L. El, Elouadrhiri, L., Eugenio, P., Fedotov, G., Fegan, S., Fleming, J. A., Forest, T. A., Garçon, M., Gevorgyan, N., Giovanetti, K. L., Girod, F. X., Gohn, W., Gothe, R. W., Graham, L., Griffioen, K. A., Guegan, B., Guidal, M., Guo, L., Hafidi, K., Hakobyan, H., Hanretty, C., Heddle, D., Hicks, K., Holtrop, M., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jo, H. S., Joo, K., Keller, D., Khandaker, M., Khetarpal, P., Kim, A., Kim, W., Klein, F. J., Koirala, S., Kubarovsky, A., Kuhn, S. E., Kuleshov, S. V., Kvaltine, N. D., Livingston, K., Lu, H. Y., MacGregor, I. J. D., Mao, Y., Markov, N., Martinez, D., Mayer, M., McKinnon, B., Meyer, C. A., Mineeva, T., Mirazita, M., Mokeev, V., Moutarde, H., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L. L., Paremuzyan, R., Park, K., Park, S., Pasyuk, E., Pereira, S. Anefalos, Phelps, E., Pisano, S., Pogorelko, O., Pozdniakov, S., Price, J. W., Procureur, S., Prok, Y., Protopopescu, D., Puckett, A. J. R., Raue, B. A., Ricco, G., Rimal, D., Ripani, M., Rosner, G., Rossi, P., Sabatié, F., Saini, M. S., Salgado, C., Saylor, N., Schott, D., Schumacher, R. A., Seder, E., Seraydaryan, H., Sharabian, Y. G., Smith, G. D., Sober, D. I., Sokhan, D., Stepanyan, S. S., Stepanyan, S., Strauch, S., Taiuti, M., Tang, W., Taylor, C. E., Tian, Ye, Tkachenko, S., Ungaro, M., Vineyard, M. F., Vlassov, A., Voskanyan, H., Voutier, E., Walford, N. K., Watts, D. P., Weinstein, L. B., Weygand, D. P., Wood, M. H., Zachariou, N., Zhang, J., Zhao, Z. W., and Zonta, I.
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High Energy Physics - Experiment ,High Energy Physics - Phenomenology ,Nuclear Experiment - Abstract
Exclusive $\pi^0$ electroproduction at a beam energy of 5.75 GeV has been measured with the Jefferson Lab CLAS spectrometer. Differential cross sections were measured at more than 1800 kinematic values in $Q^2$, $x_B$, $t$, and $\phi_\pi$, in the $Q^2$ range from 1.0 to 4.6 GeV$^2$,\ $-t$ up to 2 GeV$^2$, and $x_B$ from 0.1 to 0.58. Structure functions $\sigma_T +\epsilon \sigma_L, \sigma_{TT}$ and $\sigma_{LT}$ were extracted as functions of $t$ for each of 17 combinations of $Q^2$ and $x_B$. The data were compared directly with two handbag-based calculations including both longitudinal and transversity GPDs. Inclusion of only longitudinal GPDs very strongly underestimates $\sigma_T +\epsilon \sigma_L$ and fails to account for $\sigma_{TT}$ and $\sigma_{LT}$, while inclusion of transversity GPDs brings the calculations into substantially better agreement with the data. There is very strong sensitivity to the relative contributions of nucleon helicity flip and helicity non-flip processes. The results confirm that exclusive $\pi^0$ electroproduction offers direct experimental access to the transversity GPDs., Comment: 6 pages, 2 figures
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- 2012
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168. Deep exclusive $\pi^+$ electroproduction off the proton at CLAS
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Park, K., Guidal, M., Gothe, R. W., Laget, J. M., Garçon, M., Adhikari, K. P., Aghasyan, M., Amaryan, M. J., Anghinolfi, M., Avakian, H., Baghdasaryan, H., Ball, J., Baltzell, N. A., Battaglieri, M., Bedlinsky, I., Bennett, R. P., Biselli, A. S., Bookwalter, C., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Burkert, V. D., Carman, D. S., Celentano, A., Chandavar, S., Charles, G., Contalbrigo, M., Crede, V., D'Angelo, A., Daniel, A., Dashyan, N., De Vita, R., De Sanctis, E., Deur, A., Djalali, C., Dodge, G. E., Doughty, D., Dupre, R., Egiyan, H., Alaoui, A. El, Fassi, L. El, Fradi, A., Eugenio, P., Fedotov, G., Fegan, S., Fleming, J. A., Forest, T. A., Gevorgyan, N., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Gohn, W., Golovatch, E., Graham, L., Griffioen, K. A., Guegan, B., Guo, L., Hafidi, K., Hakobyan, H., Hanretty, C., Heddle, D., Hicks, K., Ho, D., Holtrop, M., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Jenkins, D., Jo, H. S., Keller, D., Khandaker, M., Khetarpal, P., Kim, A., Kim, W., Klein, F. J., Koirala, S., Kubarovsky, A., Kubarovsky, V., Kuhn, S. E., Kuleshov, S. V., Livingston, K., Lu, H. Y., MacGregor, I. J. D., Mao, Y., Markov, N., Martinez, D., Mayer, M., McKinnon, B., Meyer, C. A., Mineeva, T., Mirazita, M., Mokeev, V., Moutarde, H., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Nepali, C. S., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L. L., Paremuzyan, R., Park, S., Pasyuk, E., Pereira, S. Anefalos, Phelps, E., Pisano, S., Pogorelko, O., Pozdniakov, S., Price, J. W., Procureur, S., Protopopescu, D., Puckett, A. J. R., Raue, B. A., Ricco, G., Rimal, D., Ripani, M., Rosner, G., Rossi, P., Sabatie, F., Saini, M. S., Salgado, C., Schott, D., Schumacher, R. A., Seder, E., Seraydaryan, H., Sharabian, Y. G., Smith, E. S., Smith, G. D., Sober, D. I., Sokhan, D., Stepanyan, S. S., Stoler, P., Strakovsky, I. I., Strauch, S., Taiuti, M., Tang, W., Taylor, C. E., Tian, Ye, Tkachenko, S., Trivedi, A., Ungaro, M., Vernarsky, B ., Voskanyan, H., Voutier, E., Walford, N. K., Watts, D. P., Weinstein, L. B., Weygand, D. P., Wood, M. H., Zachariou, N., Zhang, J., Zhao, Z. W., and Zonta, I.
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Nuclear Experiment - Abstract
The exclusive electroproduction of $\pi^+$ above the resonance region was studied using the $\rm{CEBAF}$ Large Acceptance Spectrometer ($\rm{CLAS}$) at Jefferson Laboratory by scattering a 6 GeV continuous electron beam off a hydrogen target. The large acceptance and good resolution of $\rm{CLAS}$, together with the high luminosity, allowed us to measure the cross section for the $\gamma^* p \to n \pi^+$ process in 140 ($Q^2$, $x_B$, $t$) bins: $0.16
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- 2012
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169. Virtual Compton Scattering and the Generalized Polarizabilities of the Proton at Q^2=0.92 and 1.76 GeV^2
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Fonvieille, H., Laveissiere, G., Degrande, N., Jaminion, S., Jutier, C., Todor, L., Di Salvo, R., Van Hoorebeke, L., Alexa, L. C., Anderson, B. D., Aniol, K. A., Arundell, K., Audit, G., Auerbach, L., Baker, F. T., Baylac, M., Berthot, J., Bertin, P. Y., Bertozzi, W., Bimbot, L., Boeglin, W. U., Brash, E. J., Breton, V., Breuer, H., Burtin, E., Calarco, J. R., Cardman, L. S., Cavata, C., Chang, C. -C., Chen, J. -P., Chudakov, E., Cisbani, E., Dale, D. S., deJager, C. W., De Leo, R., Deur, A., d'Hose, N., Dodge, G. E., Domingo, J. J., Elouadrhiri, L., Epstein, M. B., Ewell, L. A., Finn, J. M., Fissum, K. G., Fournier, G., Frois, B., Frullani, S., Furget, C., Gao, H., Gao, J., Garibaldi, F., Gasparian, A., Gilad, S., Gilman, R., Glamazdin, A., Glashausser, C., Gomez, J., Gorbenko, V., Grenier, P., Guichon, P. A. M., Hansen, J. O., Holmes, R., Holtrop, M., Howell, C., Huber, G. M., Hyde, C. E., Incerti, S., Iodice, M., Jardillier, J., Jones, M. K., Kahl, W., Kato, S., Katramatou, A. T., Kelly, J. J., Kerhoas, S., Ketikyan, A., Khayat, M., Kino, K., Kox, S., Kramer, L. H., Kumar, K. S., Kumbartzki, G., Kuss, M., Leone, A., LeRose, J. J., Liang, M., Lindgren, R. A., Liyanage, N., Lolos, G. J., Lourie, R. W., Madey, R., Maeda, K., Malov, S., Manley, D. M., Marchand, C., Marchand, D., Margaziotis, D. J., Markowitz, P., Marroncle, J., Martino, J., McCormick, K., McIntyre, J., Mehrabyan, S., Merchez, F., Meziani, Z. E., Michaels, R., Miller, G. W., Mougey, J. Y., Nanda, S. K., Neyret, D., Offermann, E. A. J. M., Papandreou, Z., Pasquini, B., Perdrisat, C. F., Perrino, R., Petratos, G. G., Platchkov, S., Pomatsalyuk, R., Prout, D. L., Punjabi, V. A., Pussieux, T., Quemener, G., Ransome, R. D., Ravel, O., Real, J. S., Renard, F., Roblin, Y., Rowntree, D., Rutledge, G., Rutt, P. M., Saha, A., Saito, T., Sarty, A. J., Serdarevic, A., Smith, T., Smirnov, G., Soldi, K., Sorokin, P., Souder, P. A., Suleiman, R., Templon, J. A., Terasawa, T., Tieulent, R., Tomasi-Gustaffson, E., Tsubota, H., Ueno, H., Ulmer, P. E., Urciuoli, G. M., Vanderhaeghen, M., Van der Meer, R. L. J., Van De Vyver, R., Vernin, P., Vlahovic, B., Voskanyan, H., Voutier, E., Watson, J. W., Weinstein, L. B., Wijesooriya, K., Wilson, R., Wojtsekhowski, B. B., Zainea, D. G., Zhang, W. -M., Zhao, J., and Zhou, Z. -L.
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Nuclear Experiment ,High Energy Physics - Experiment - Abstract
Virtual Compton Scattering (VCS) on the proton has been studied at Jefferson Lab using the exclusive photon electroproduction reaction (e p --> e p gamma). This paper gives a detailed account of the analysis which has led to the determination of the structure functions P_LL-P_TT/epsilon and P_LT, and the electric and magnetic generalized polarizabilities (GPs) alpha_E(Q^2) and beta_M(Q^2) at values of the four-momentum transfer squared Q^2= 0.92 and 1.76 GeV^2. These data, together with the results of VCS experiments at lower momenta, help building a coherent picture of the electric and magnetic GPs of the proton over the full measured Q^2-range, and point to their non-trivial behavior., Comment: version 2: modified according to PRC Editor's and Referee's recommendations. Archival paper for the E93-050 experiment at JLab Hall A. 28 pages, 23 figures, 5 cross-section tables. To be submitted to Phys.Rev.C
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- 2012
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170. Evidence for the Onset of Color Transparency in $\rho^0$ Electroproduction off Nuclei
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Fassi, L. El, Zana, L., Hafidi, K., Holtrop, M., Mustapha, B., Brooks, W. K., Hakobyan, H., Zheng, X., Adhikari, K. P., Adikaram, D., Aghasyan, M., Amaryan, M. J., Anghinolfi, M., Arrington, J., Avakian, H., Baghdasaryan, H., Battaglieri, M., Batourine, V., Bedlinskiy, I., Biselli, A. S., Bookwalter, C., Branford, D., Briscoe, W. J., Bultmann, S., Burkert, V. D., Carman, D. S., Celentano, A., Chandavar, S., Cole, P. L., Contalbrigo, M., Crede, V., D'Angelo, A., Daniel, A., Dashyan, N., De Vita, R., De Sanctis, E., Deur, A., Dey, B., Dickson, R., Djalali, C., Dodge, G. E., Doughty, D., Dupre, R., Egiyan, H., Alaoui, A. El, Elouadrhiri, L., Eugenio, P., Fedotov, G., Fegan, S., Gabrielyan, M. Y., Garcon, M., Gevorgyan, N., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Goetz, J. T., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Guo, L., Hanretty, C., Heddle, D., Hicks, K., Holt, R. J., Hyde, C. E., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jawalkar, S. S., Keller, D., Khandaker, M., Khetarpal, P., Kim, A., Kim, W., Klein, A., Klein, F. J., Kubarovsky, V., Kuhn, S. E., Kuleshov, S. V., Kuznetsov, V., Laget, J. M., Lu, H. Y., MacGregor, I. J. D., Mao, Y., Markov, N., Mayer, M., McAndrew, J., McKinnon, B., Meyer, C. A., Mineeva, T., Mirazita, M., Mokeev, V., Moreno, B., Moutarde, H., Munevar, E., Nadel-Turonski, P., Ni, A., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Pappalardo, L., Paremuzyan, R., Park, K., Park, S., Pasyuk, E., Pereira, S. Anefalos, Phelps, E., Pisano, S., Pozdniakov, S., Price, J. W., Procureur, S., Protopopescu, D., Raue, B. A., Reimer, P. E., Ricco, G., Rimal, D., Ripani, M., Ritchie, B. G., Rosner, G., Rossi, P., Sabatie, F., Saini, M. S., Salgado, C., Schott, D., Schumacher, R. A., Seraydaryan, H., Sharabian, Y. G., Smith, E. S., Smith, G. D., Sober, D. I., Sokhan, D., Stepanyan, S. S., Stepanyan, S., Stoler, P., Strauch, S., Taiuti, M., Tang, W., Taylor, C. E., Tedeschi, D. J., Tkachenko, S., Ungaro, M., Vernarsky, B ., Vineyard, M. F., Voskanyan, H., Voutier, E., Watts, D., Weinstein, L. B., Weygand, D. P., Wood, M. H., Zachariou, N., Zhao, B., and Zhao, Z. W.
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Nuclear Experiment - Abstract
We have measured the nuclear transparency of the incoherent diffractive $A(e,e'\rho^0)$ process in $^{12}$C and $^{56}$Fe targets relative to $^2$H using a 5 GeV electron beam. The nuclear transparency, the ratio of the produced $\rho^0$'s on a nucleus relative to deuterium, which is sensitive to $\rho A$ interaction, was studied as function of the coherence length ($l_c$), a lifetime of the hadronic fluctuation of the virtual photon, and the four-momentum transfer squared ($Q^2$). While the transparency for both $^{12}$C and $^{56}$Fe showed no $l_c$ dependence, a significant $Q^2$ dependence was measured, which is consistent with calculations that included the color transparency effects., Comment: 6 pages and 4 figures
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- 2012
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171. Precise Measurements of Beam Spin Asymmetries in Semi-Inclusive $\pi^0$ production
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Aghasyan, M., Avakian, H., Rossi, P., De Sanctis, E., Hasch, D., Mirazita, M., Adikaram, D., Amaryan, M. J., Anghinolfi, M., Baghdasaryan, H., Ball, J., Battaglieri, M., Batourine, V., Bedlinskiy, I., Bennett, R. P., Biselli, A. S., Branford, D., Briscoe, W. J., Bültmann, S., Burkert, V. D., Carman, D. S., Chandavar, S., Cole, P. L., Collins, P., Contalbrigo, M., Crede, V., D'Angelo, A., Daniel, A., Dashyan, N., De Vita, R., Deur, A., Dey, B., Dickson, R., Djalali, C., Dodge, G. E., Doughty, D., Dupre, R., Egiyan, H., Alaoui, A. El, Elouadrhiri, L., Eugenio, P., Fedotov, G., Fegan, S., Fradi, A., Gabrielyan, M. Y., Garçon, M., Gevorgyan, N., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Goetz, J. T., Gohn, W., Golovatch, E., Gothe, R. W., Graham, L., Griffioen, K. A., Guegan, B., Guidal, M., Guler, N., Guo, L., Hafidi, K., Hanretty, C., Hicks, K., Holtrop, M., Hyde, C. E., Ilieva, Y., Ireland, D. G., Isupov, E. L., Jawalkar, S. S., Jenkins, D., Jo, H. S., Joo, K., Keller, D., Khandaker, M., Khetarpal, P., Kim, A., Kimy, W., Klein, A., Klein, F. J., Kubarovsky, V., Kuhn, S. E., Kuleshov, S. V., Kuznetsov, V., Kvaltine, N. D., Livingston, K., Lu, H. Y., MacGregor, I . J . D., Markov, N., Mayer, M., McAndrew, J., McKinnon, B., Meyer, C. A., Micherdzinska, A. M., Mokeev, V., Moreno, B., Moutarde, H., Munevar, E., Nadel-Turonski, P., Ni, A., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Ostrovidov, A. I., Paolone, M., Pappalardo, L., Paremuzyan, R., Park, K., Park, S., Pasyuk, E., Pereira, S. Anefalos, Phelps, E., Pisano, S., Pogorelko, O., Pozdniakov, S., Price, J. W., Procureur, S., Prok, Y., Protopopescu, D., Raue, B. A., Ricco, G., Rimal, D., Ripani, M., Rosner, G., Sabatié, F., Saini, M. S., Salgado, C., Schott, D., Schumacher, R. A., Seder, E., Seraydaryan, H., Sharabian, Y. G., Smith, G. D., Sober, D. I., Stepanyan, S. S., Stepanyan, S., Stoler, P., Strakovsky, I., Strauch, S., Taiuti, M., Tang, W., Taylor, C. E., Tkachenko, S., Ungaro, M., Voskanyan, H., Voutier, E., Watts, D., Weinstein, L. B., Weygand, D. P., Wood, M. H., Zana, L., Zhang, J., Zhao, B., and Zhao, Z. W.
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High Energy Physics - Experiment - Abstract
We present studies of single-spin asymmetries for neutral pion electroproduction in semi-inclusive deep-inelastic scattering of 5.776 GeV polarized electrons from an unpolarized hydrogen target, using the CEBAF Large Acceptance Spectrometer (CLAS) at the Thomas Jefferson National Accelerator Facility. A substantial $\sin \phi_h$ amplitude has been measured in the distribution of the cross section asymmetry as a function of the azimuthal angle $\phi_h$ of the produced neutral pion. The dependence of this amplitude on Bjorken $x$ and on the pion transverse momentum is extracted with significantly higher precision than previous data and is compared to model calculations., Comment: to be submitted PLB
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- 2011
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172. Final Analysis of Proton Form Factor Ratio Data at $\mathbf{Q^2 = 4.0}$, 4.8 and 5.6 GeV$\mathbf{^2}$
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Puckett, A. J. R., Brash, E. J., Gayou, O., Jones, M. K., Pentchev, L., Perdrisat, C. F., Punjabi, V., Aniol, K. A., Averett, T., Benmokhtar, F., Bertozzi, W., Bimbot, L., Calarco, J. R., Cavata, C., Chai, Z., Chang, C. -C., Chang, T., Chen, J. P., Chudakov, E., De Leo, R., Dieterich, S., Endres, R., Epstein, M. B., Escoffier, S., Fonvieille, K. G. Fissum. H., Frullani, S., Gao, J., Garibaldi, F., Gilad, S., Gilman, R., Glamazdin, A., Glashausser, C., Gomez, J., Hansen, J. -O., Higinbotham, D., Huber, G. M., Iodice, M., de Jager, C. W., Jiang, X., Khandaker, M., Kozlov, S., Kramer, K. M., Kumbartzki, G., LeRose, J. J., Lhuillier, D., Lindgren, R. A., Liyanage, N., Lolos, G. J., Margaziotis, D. J., Marie, F., Markowitz, P., McCormick, K., Michaels, R., Milbrath, B. D., Nanda, S. K., Neyret, D., Piskunov, N. M., Ransome, R. D., Raue, B. A., Roché, R., Rvachev, M., Saha, A., Salgado, C., Sirca, S., Sitnik, I., Strauch, S., Todor, L., Tomasi-Gustafsson, E., Urciuoli, G. M., Voskanyan, H., Wijesooriya, K., Wojtsekhowski, B. B., Zheng, X., and Zhu, L.
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Nuclear Experiment ,High Energy Physics - Experiment - Abstract
Precise measurements of the proton electromagnetic form factor ratio $R = \mu_p G_E^p/G_M^p$ using the polarization transfer method at Jefferson Lab have revolutionized the understanding of nucleon structure by revealing the strong decrease of $R$ with momentum transfer $Q^2$ for $Q^2 \gtrsim 1$ GeV$^2$, in strong disagreement with previous extractions of $R$ from cross section measurements. In particular, the polarization transfer results have exposed the limits of applicability of the one-photon-exchange approximation and highlighted the role of quark orbital angular momentum in the nucleon structure. The GEp-II experiment in Jefferson Lab's Hall A measured $R$ at four $Q^2$ values in the range 3.5 GeV$^2 \le Q^2 \le 5.6$ GeV$^2$. A possible discrepancy between the originally published GEp-II results and more recent measurements at higher $Q^2$ motivated a new analysis of the GEp-II data. This article presents the final results of the GEp-II experiment, including details of the new analysis, an expanded description of the apparatus and an overview of theoretical progress since the original publication. The key result of the final analysis is a systematic increase in the results for $R$, improving the consistency of the polarization transfer data in the high-$Q^2$ region. This increase is the result of an improved selection of elastic events which largely removes the systematic effect of the inelastic contamination, underestimated by the original analysis., Comment: 30 pages, 17 figures, 4 tables. Final version to appear in Phys. Rev. C
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- 2011
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173. Measurements of the Electric Form Factor of the Neutron up to Q2=3.4 GeV2 using the Reaction He3(e,e'n)pp
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Riordan, S., Abrahamyan, S., Craver, B., Kelleher, A., Kolarkar, A., Miller, J., Cates, G. D., Liyanage, N., Wojtsekhowski, B., Acha, A., Allada, K., Anderson, B., Aniol, K. A., Annand, J. R. M., Arrington, J., Averett, T., Beck, A., Bellis, M., Boeglin, W., Breuer, H., Calarco, J. R., Camsonne, A., Chen, J. P., Chudakov, E., Coman, L., Crowe, B., Cusanno, F., Day, D., Degtyarenko, P., Dolph, P. A. M., Dutta, C., Ferdi, C., Fernandez-Ramirez, C., Feuerbach, R., Fraile, L. M., Franklin, G., Frullani, S., Fuchs, S., Garibaldi, F., Gevorgyan, N., Gilman, R., Glamazdin, A., Gomez, J., Grimm, K., Hansen, J. O., Herraiz, J. L., Higinbotham, D. W., Holmes, R., Holmstrom, T., Howell, D., deJager, C. W., Jiang, X., Jones, M. K., Katich, J., Kaufman, L. J., Khandaker, M., Kelly, J. J., Kiselev, D., Korsch, W., LeRose, J., Lindgren, R., Markowitz, P., Margaziotis, D. J., Beck, S. May-Tal, Mayilyan, S., McCormick, K., Meziani, Z. E., Michaels, R., Moffit, B., Nanda, S., Nelyubin, V., Ngo, T., Nikolenko, D. M., Norum, B., Pentchev, L., Perdrisat, C. F., Piasetzky, E., Pomatsalyuk, R., Protopopescu, D., Puckett, A. J. R., Punjabi, V. A., Qian, X., Qiang, Y., Quinn, B., Rachek, I., Ransome, R. D., Reimer, P. E., Reitz, B., Roche, J., Ron, G., Rondon, O., Rosner, G., Saha, A., Sargsian, M., Sawatzky, B., Segal, J., Shabestari, M., Shahinyan, A., Shestakov, Yu., Singh, J., Sirca, S., Souder, P., Stepanyan, S., Stibunov, V., Sulkosky, V., Tajima, S., Tobias, W. A., Udias, J. M., Urciuoli, G. M., Vlahovic, B., Voskanyan, H., Wang, K., Wesselmann, F. R., Vignote, J. R., Wood, S. A., Wright, J., Yao, H., and Zhu, X.
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Nuclear Experiment - Abstract
The electric form factor of the neutron was determined from studies of the reaction He3(e,e'n)pp in quasi-elastic kinematics in Hall A at Jefferson Lab. Longitudinally polarized electrons were scattered off a polarized target in which the nuclear polarization was oriented perpendicular to the momentum transfer. The scattered electrons were detected in a magnetic spectrometer in coincidence with neutrons that were registered in a large-solid-angle detector. More than doubling the Q2-range over which it is known, we find GEn = 0.0225 +/- 0.0017 (stat) +/- 0.0024 (syst), 0.0200 +/- 0.0023 +/- 0.0018, and 0.0142 +/- 0.0019 +/- 0.0013 for Q2 = 1.72, 2.48, and 3.41 GeV2, respectively., Comment: submitted to PRL
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- 2010
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174. A Priori Bounds for Time-Dependent Models
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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175. A Priori Bounds for Models with Singularities
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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176. Estimates for MFGs
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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177. The Nonlinear Adjoint Method
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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178. A Priori Bounds for Stationary Models
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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179. Estimates for the Hamilton–Jacobi Equation
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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180. Estimates for the Transport and Fokker–Planck Equations
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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181. Introduction
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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182. Explicit Solutions, Special Transformations, and Further Examples
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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183. Local Mean-Field Games: Existence
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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184. Non-local Mean-Field Games: Existence
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Gomes, Diogo A., Pimentel, Edgard A., Voskanyan, Vardan, Bellomo, Nicola, Series editor, Benzi, Michele, Series editor, Jorgensen, Palle E.T., Series editor, Li, Tatsien, Series editor, Melnik, Roderick, Series editor, Scherzer, Otmar, Series editor, Steinberg, Benjamin, Series editor, Reichel, Lothar, Series editor, Tschinkel, Yuri, Series editor, Yin, G. George, Series editor, Zhang, Ping, Series editor, Gomes, Diogo A., Pimentel, Edgard A., and Voskanyan, Vardan
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- 2016
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185. An experimental program with high duty-cycle polarized and unpolarized positron beams at Jefferson Lab
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Accardi, A., Afanasev, A., Albayrak, I., Ali, S. F., Amaryan, M., Annand, J. R. M., Arrington, J., Asaturyan, A., Atac, H., Avakian, H., Averett, T., Gayoso, C. Ayerbe, Bai, X., Barion, L., Battaglieri, M., Bellini, V., Beminiwattha, R., Benmokhtar, F., Berdnikov, V. V., Bernauer, J. C., Bertone, V., Bianconi, A., Biselli, A., Bisio, P., Blunden, P., Boer, M., Bondì, M., Brinkmann, K.-T., Briscoe, W. J., Burkert, V., Cao, T., Camsonne, A., Capobianco, R., Cardman, L., Carmignotto, M., Caudron, M., Causse, L., Celentano, A., Chatagnon, P., Chen, J.-P., Chetry, T., Ciullo, G., Cline, E., Cole, P. L., Contalbrigo, M., Costantini, G., D’Angelo, A., Darmé, L., Day, D., Defurne, M., De Napoli, M., Deur, A., De Vita, R., D’Hose, N., Diehl, S., Diefenthaler, M., Dongwi, B., Dupré, R., Dutrieux, H., Dutta, D., Ehrhart, M., El Fassi, L., Elouadrhiri, L., Ent, R., Erler, J., Fernando, I. P., Filippi, A., Flay, D., Forest, T., Fuchey, E., Fucini, S., Furletova, Y., Gao, H., Gaskell, D., Gasparian, A., Gautam, T., Girod, F.-X., Gnanvo, K., Grames, J., Grauvogel, G. N., Gueye, P., Guidal, M., Habet, S., Hague, T. J., Hamilton, D. J., Hansen, O., Hasell, D., Hattawy, M., Higinbotham, D. W., Hobart, A., Horn, T., Hyde, C. E., Ibrahim, H., Ilyichev, A., Italiano, A., Joo, K., Joosten, S. J., Khachatryan, V., Kalantarians, N., Kalicy, G., Karky, B., Keller, D., Keppel, C., Kerver, M., Khandaker, M., Kim, A., Kim, J., King, P. M., Kinney, E., Klimenko, V., Ko, H.-S., Kohl, M., Kozhuharov, V., Kriesten, B. T., Krnjaic, G., Kubarovsky, V., Kutz, T., Lanza, L., Leali, M., Lenisa, P., Liyanage, N., Liu, Q., Liuti, S., Mammei, J., Mantry, S., Marchand, D., Markowitz, P., Marsicano, L., Mascagna, V., Mazouz, M., McCaughan, M., McKinnon, B., McNulty, D., Melnitchouk, W., Metz, A., Meziani, Z.-E., Migliorati, S., Mihovilovič, M., Milner, R., Mkrtchyan, A., Mkrtchyan, H., Movsisyan, A., Moutarde, H., Muhoza, M., Camacho, C. Muñoz, Murphy, J., Nadel-Turoński, P., Nardi, E., Nazeer, J., Niccolai, S., Niculescu, G., Novotny, R., Owens, J. F., Paolone, M., Pappalardo, L., Paremuzyan, R., Pasquini, B., Pasyuk, E., Patel, T., Pegg, I., Peng, C., Perera, D., Poelker, M., Price, K., Puckett, A. J. R., Raggi, M., Randazzo, N., Rashad, M. N. H., Rathnayake, M., Raue, B., Reimer, P. E., Rinaldi, M., Rizzo, A., Roblin, Y., Roche, J., Rondon-Aramayo, O., Sabatié, F., Salmè, G., Santopinto, E., Santos Estrada, R., Sawatzky, B., Schmidt, A., Schweitzer, P., Scopetta, S., Sergeyeva, V., Shabestari, M., Shahinyan, A., Sharabian, Y., Širca, S., Smith, E. S., Sokhan, D., Somov, A., Sparveris, N., Spata, M., Spiesberger, H., Spreafico, M., Stepanyan, S., Stoler, P., Strakovsky, I., Suleiman, R., Suresh, M., Sznajder, P., Szumila-Vance, H., Tadevosyan, V., Tadepalli, A. S., Thomas, A. W., Tiefenback, M., Trotta, R., Ungaro, M., Valente, P., Vanderhaeghen, M., Venturelli, L., Voskanyan, H., Voutier, E., Wojtsekhowski, B., Wood, M. H., Wood, S., Xie, J., Xiong, W., Ye, Z., Yurov, M., Zaunick, H.-G., Zhamkochyan, S., Zhang, J., Zhang, S., Zhao, S., Zhao, Z. W., Zheng, X., Zhou, J., and Zorn, C.
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- 2021
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186. Clinical and genetic characteristics of type 7 distal arthrogryposis caused by a pathogenic variant in the MYH8 gene
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Sharkova, I. V., primary, Nikitin, S. S., additional, Markova, T. V., additional, Voskanyan, A. E., additional, Melnik, E. A., additional, Shchagina, O. A., additional, and Dadali, E. L., additional
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- 2023
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187. Figure 2 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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188. Figure 6 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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189. Figure 5 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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190. Development of an efficient method for obtaining lactose and lactulose from whey
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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191. Figure 3 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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192. Figure 4 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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193. Figure 8 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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194. Figure 7 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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195. Figure 1 from: Tsaturyan A, Arstamyan L, Sargsyan A, Saribekyan J, Voskanyan A, Minasyan E, Israelyan M, Sargsyan T, Stepanyan L (2023) Development of an efficient method for obtaining lactose and lactulose from whey. Pharmacia 70(4): 1039-1046. https://doi.org/10.3897/pharmacia.70.e109086
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Tsaturyan, Avetis, primary, Arstamyan, Lilya, additional, Sargsyan, Anyuta, additional, Saribekyan, Jaklina, additional, Voskanyan, Ani, additional, Minasyan, Ella, additional, Israelyan, Monika, additional, Sargsyan, Tatevik, additional, and Stepanyan, Lala, additional
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- 2023
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196. Measurement of the helicity asymmetry $${\mathbb {E}}$$ for the $$\vec {\gamma }\vec {p} \rightarrow p \pi ^0$$ reaction in the resonance region
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Kim, C. W., primary, Zachariou, N., additional, Bashkanov, M., additional, Briscoe, W. J., additional, Fegan, S., additional, Kashevarov, V. L., additional, Nikonov, K., additional, Sarantsev, A., additional, Schmidt, A., additional, Strakovsky, I. I., additional, Watts, D. P., additional, Workman, R. L., additional, Achenbach, P., additional, Akbar, Z., additional, Amaryan, M. J., additional, Angelini, G., additional, Armstrong, W. R., additional, Atac, H., additional, Baashen, L., additional, Baltzell, N. A., additional, Barion, L., additional, Battaglieri, M., additional, Bedlinskiy, I., additional, Benkel, B., additional, Benmokhtar, F., additional, Benmouna, N., additional, Bianconi, A., additional, Biselli, A. S., additional, Booth, W. A., additional, Bossù, F., additional, Boiarinov, S., additional, Brinkmann, K. T., additional, Brock, J., additional, Bulumulla, D., additional, Burkert, V. D., additional, Cao, T., additional, Carlin, C., additional, Carman, D. S., additional, Carvajal, J. C., additional, Chatagnon, P., additional, Chesnokov, V., additional, Chetry, T., additional, Ciullo, G., additional, Clash, G., additional, Cole, P. L., additional, Contalbrigo, M., additional, Becerra, O. Cortes, additional, Costantini, G., additional, Crede, V., additional, D’Angelo, A., additional, Dashyan, N., additional, De Vita, R., additional, Defurne, M., additional, Deur, A., additional, Diehl, S., additional, Djalali, C., additional, Dugger, M., additional, Dupre, R., additional, Egiyan, H., additional, Alaoui, A. El, additional, Fassi, L. El, additional, Elouadrhiri, L., additional, Eugenio, P., additional, Filippi, A., additional, Fogler, C., additional, Gavalian, G., additional, Gilfoyle, G. P., additional, Golubenko, A. A., additional, Gosta, G., additional, Gothe, R. W., additional, Griffioen, K. A., additional, Hafidi, K., additional, Hakobyan, H., additional, Hattawy, M., additional, Hauenstein, F., additional, Hayward, T. B., additional, Heddle, D., additional, Hobart, A., additional, Holtrop, M., additional, Ilieva, Y., additional, Illari, I., additional, Ireland, D. G., additional, Isupov, E. L., additional, Iwamoto, H., additional, Jenkins, D., additional, Jo, H. S., additional, Johnston, R., additional, Joo, K., additional, Joosten, S., additional, Kageya, T., additional, Keith, C. D., additional, Keller, D., additional, Khanal, A., additional, Kim, A., additional, Kim, W., additional, Klein, F. J., additional, Klimenko, V., additional, Kripko, A., additional, Kubarovsky, V., additional, Lanza, L., additional, Leali, M., additional, Lee, S., additional, Li, X., additional, Livingston, K., additional, MacGregor, I. J. D., additional, Marchand, D., additional, Mascagna, V., additional, McKinnon, B., additional, Migliorati, S., additional, Milner, R. G., additional, Mineeva, T., additional, Mokeev, V., additional, Camacho, C. Munoz, additional, Nadel-Turonski, P., additional, Neupane, K., additional, Niccolai, S., additional, Osipenko, M., additional, Ostrovidov, A. I., additional, Pandey, P., additional, Paolone, M., additional, Pappalardo, L. L., additional, Paremuzyan, R., additional, Pasyuk, E., additional, Paul, S. J., additional, Pilleux, N., additional, Pokhrel, M., additional, Poudel, J., additional, Price, J. W., additional, Prok, Y., additional, Radic, A., additional, Ramasubramanian, N., additional, Ratliff, S., additional, Reed, T., additional, Richards, J., additional, Ripani, M., additional, Ritchie, B. G., additional, Ritman, J., additional, Rosner, G., additional, Salgado, C., additional, Schadmand, S., additional, Schott, D., additional, Schumacher, R. A., additional, Scott, M. B. C., additional, Seely, M. L., additional, Seroka, E. M., additional, Shirokov, E. V., additional, Shrestha, U., additional, Sokhan, D., additional, Sparveris, N., additional, Spreafico, M., additional, Strauch, S., additional, Tan, J., additional, Tyson, R., additional, Ungaro, M., additional, Vallarino, S., additional, Venturelli, L., additional, Voskanyan, H., additional, Voutier, E., additional, Wei, X., additional, Williams, R., additional, Wishart, R., additional, Wood, M. H., additional, Yurov, M., additional, Zhang, J., additional, and Zurek, M., additional
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- 2023
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197. Combating The Opioid Crisis And Its National Security Threat Through CReDO: A Multidisciplinary Solution With Disaster Medicine Implications
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Woodward, Christina Ann, primary, Issa, Fadi Salah, additional, Caneva, Duane Carl, additional, Voskanyan, Amalia, additional, Gadhia, Raj Arvind, additional, Hart, Alexander, additional, Hertelendy, Attila Julius, additional, DiGregorio, David Anthony, additional, Ciottone, Robert Gregory, additional, and Ciottone, Gregory Robert, additional
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- 2023
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198. Comparative analysis of models predicting the risks of early poor outcome of deceased-donor liver transplantation: a retrospective single-center study
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Sushkov, A. I., primary, Popov, M. V., additional, Rudakov, V. S., additional, Svetlakova, D. S., additional, Pashkov, A. N., additional, Lukianchikova, A. S., additional, Muktarzhan, M., additional, Gubarev, K. K., additional, Syutkin, V. E., additional, Artemyev, A. I., additional, and Voskanyan, S. E., additional
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- 2023
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199. HL-393 5-year Overall Survival Rate of Patients With Classical Hodgkin Lymphoma in Armenia
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Evoyan, Levon, primary, Tamamyan, Gevorg, additional, Ivanyan, Arusyak, additional, Ter-Grigoryan, Anahit, additional, Saaryan, Miranush, additional, Danelyan, Samvel, additional, and Voskanyan, Astghik, additional
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- 2023
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200. ALL-553 Unexplained Increase in Incidence of T-Acute Lymphoblastic Leukemia/Lymphoma in Armenia
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Martirosyan, Nare, primary, Ivanyan, Arusyak, additional, Badikyan, Maria, additional, Hambardzumyan, Liana, additional, Harutyunyan, Lusine, additional, Movsisyan, Alisa, additional, Sevoyan, Anna, additional, Hakobyan, Yervand, additional, Tamamyan, Gevorg, additional, Danielyan, Samvel, additional, and Voskanyan, Astghik, additional
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- 2023
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