49 results on '"Ausfelder, Florian"'
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2. Wasserstoff im Energiesystem der Zukunft
3. Reaction dynamics of O(3P) atoms with saturated hydrocarbons
4. Sichtweise der Akteure
5. The role of hydrogen in the process industries – implications on energy infrastructure
6. Wasserstoff: Ein Energiemittel?
7. Optionen für den Import grünen Wasserstoffs nach Deutschland bis zum Jahr 2030 : Transportwege - Länderbewertungen - Realisierungserfordernisse
8. Hydrogen in the Chemical Industry
9. 3. Roadmap des Kopernikus-Projektes P2X Phase II - OPTIONEN FÜR EIN NACHHALTIGES ENERGIESYSTEM MIT POWER-TO-XTECHNOLOGIEN
10. Ammoniak ohne CO���-Emissionen
11. Zukunft der Wärmebereitstellung in der Industrie
12. TRILATERAL INFRASTRUCTURE PROJECT PHASE 0
13. Ammoniak ohne CO2-Emissionen
14. Infrastructure Challenges Caused by Industrial Transformation to Achieve Greenhouse Gas Neutrality. Ammonia Production in the Antwerp‐Rotterdam‐Rhine‐Ruhr Area
15. Line strength factors for E, [F.sup.1][[sigma].sup.+.sub.g] (v' = 0, J' = J') - [X.sup.1][[sigma].sup.+.sub.g] (v', J') (2 + 1) REMPI transitions in molecular hydrogen
16. Interaction of Regulatory Aspects for Carbon Capture and Utilization Applications
17. Power‐to‐Fuels: E‐Fuels as an Important Option for a Climate‐Friendly Mobility of the Future
18. Pulse shaping control of spatially aligned rotational wavepackets of N2 and O2
19. Flexibilitätsoptionen in der Grundstoffindustrie II : Analysen, Technologien, Beispiele
20. Line strength factors for E,F1Σ+g(v′ = 0, J′ = J′′) – X1Σ+g (v′′, J′′) (2 + 1) REMPI transitions in molecular hydrogen
21. Infrastructure Challenges Caused by Industrial Transformation to Achieve Greenhouse Gas Neutrality. Ammonia Production in the Antwerp‐Rotterdam‐Rhine‐Ruhr Area.
22. Flexibilitätsoptionen in der Grundstoffindustrie : Methodik, Potenziale, Hemmnisse
23. Flexibilitätspotenziale und -perspektiven der Chlor-Alkali Elektrolyse
24. 'Sektorkopplung' - Untersuchungen und Überlegungen zur Entwicklung eines integrierten Energiesystems
25. Rovibrational product state distribution for inelastic H+D2 collisions.
26. Collision energy dependence of the HD(ν[sup ′]=2) product rotational distribution of the H+D[sub 2] reaction in the range 1.30–1.89 eV.
27. Disagreement between theory and experiment in the simplest chemical reaction: Collision energy dependent rotational distributions for H+D[sub 2]→HD(ν[sup ′]=3,j[sup ′])+D.
28. Measurement of the cross section for H+D[sub 2]→HD(v[sup ′]=3,j[sup ′]=0)+D as a function of angle and energy.
29. Reaction products with internal energy beyond the kinematic limit result from trajectories far from the minimum energy path: An example from H + HBr yields H2 + Br
30. Energy Storage as Part of a Secure Energy Supply
31. Energiespeicherung als Element einer sicheren Energieversorgung
32. A Practical Modular Course of Combinatorial and High‐Throughput Methods for Use in Academic Teaching Laboratories
33. Preface
34. Velocity Map Imaging Study of the Photodissociation of CH3SH: Internal Energy Distribution of the SH Fragment
35. Reaction Products with Internal Energy beyond the Kinematic Limit Result from Trajectories Far from the Minimum Energy Path: An Example from H + HBr → H2 + Br
36. Rovibrational product state distribution for inelastic H+D2 collisions
37. Line strength factors for E,F1Σ+g(v′ = 0, J′ = J′′) X1Σ+g (v′′, J′′) (2 + 1) REMPI transitions in molecular hydrogen
38. Collision energy dependence of the HD(ν′=2) product rotational distribution of the H+D2 reaction in the range 1.30–1.89 eV
39. Measurement of the cross section for H+D2→HD(v′=3,j′=0)+D as a function of angle and energy
40. The dynamics of O(3P) + deuterated hydrocarbons: influences on product rotation and fine-structure state partitioning
41. ChemInform Abstract: The Dynamics of Reactions of O(3P) Atoms with Saturated Hydrocarbons and Related Compounds
42. The Dynamics of Reactions of O(3P) Atoms with Saturated Hydrocarbons and Related Compounds
43. Line strength factors for E,F1Σ+g(v′ = 0, J′ = J′′) – X1Σ+g (v′′, J′′) (2 + 1) REMPI transitions in molecular hydrogen
44. Reaction Dynamics of O(3P) Atoms with Saturated Hydrocarbons
45. The dynamics of O(3P) + deuterated hydrocarbons: influences on product rotation and fine-structure state partitioning
46. Flexibilitätsoptionen in der Grundstoffindustrie II - Kapitel 3: Thermische Energiespeicher
47. Flexibilitätsoptionen in der Grundstoffindustrie Methodik | Potenziale | Hemmnisse
48. Reaction Products with Internal Energy beyond the Kinematic Limit Result from Trajectories Far from the Minimum Energy Path: An Example from H + HBr → H2 + Br.
49. Reaction products with internal energy beyond the kinematic limit result from trajectories far from the minimum energy path: an example from H + HBr --> H2 + Br.
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