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101. Gas-phase metallicity gradients of TNG50 star-forming galaxies

102. Properties of the ionized CGM and IGM: tests for galaxy formation models from the Sunyaev–Zel’dovich effect

103. Molecular hydrogen in IllustrisTNG galaxies: carefully comparing signatures of environment with local CO and SFR data

104. Predictions for the angular dependence of gas mass flow rate and metallicity in the circumgalactic medium

105. A redshift-dependent IRX–β dust attenuation relation for TNG50 galaxies

106. Cosmological simulations of galaxy formation

107. Percent-level constraints on baryonic feedback with spectral distortion measurements

108. The evolution of the barred galaxy population in the TNG50 simulation

109. Spatially resolved star formation and inside-out quenching in the TNG50 simulation and 3D-HST observations

110. Dust in and around galaxies: dust in cluster environments and its impact on gas cooling

111. The cumulative star formation histories of dwarf galaxies with TNG50. I: Environment-driven diversity and connection to quenching

112. Morphological Types of DM Halos in Milky Way-like Galaxies in the TNG50 Simulation: Simple, Twisted, or Stretched

113. The Supersonic Project: SIGOs, A Proposed Progenitor to Globular Clusters, and Their Connections to Gravitational-wave Anisotropies

114. Dust entrainment in galactic winds

115. The abundance of satellites around Milky Way- And M31-like galaxies with the TNG50 simulation: A matter of diversity

116. Inferring the Morphology of Stellar Distribution in TNG50: Twisted and Twisted-Stretched shapes

117. Early-type galaxy density profiles from IllustrisTNG – I. Galaxy correlations and the impact of baryons

118. Simulating the interstellar medium and stellar feedback on a moving mesh: implementation and isolated galaxies

119. The physical origins and dominant emission mechanisms of Lyman-alpha halos: results from the TNG50 simulation in comparison to MUSE observations

120. Quenched fractions in the IllustrisTNG simulations: the roles of AGN feedback, environment, and pre-processing

121. Quenched fractions in the IllustrisTNG simulations: comparison with observations and other theoretical models

122. Ejective and preventative: the IllustrisTNG black hole feedback and its effects on the thermodynamics of the gas within and around galaxies

123. Baryons in the Cosmic Web of IllustrisTNG - II. The connection among galaxies, haloes, their formation time, and their location in the Cosmic Web

124. The Supersonic Project: To cool or not to cool Supersonically Induced Gas Objects (SIGOs)?

125. Radiative AGN feedback on a moving mesh: The impact of the galactic disc and dust physics on outflow properties

126. The distinct stellar-to-halo mass relations of satellite and central galaxies: insights from the IllustrisTNG simulations

127. Resolving small-scale cold circumgalactic gas in TNG50

128. Simulating the interstellar medium of galaxies with radiative transfer, non-equilibrium thermochemistry, and dust

129. The fate of disc galaxies in IllustrisTNG clusters

130. Galaxy interactions in IllustrisTNG-100, I: The power and limitations of visual identification

131. The abundance, distribution, and physical nature of highly ionized oxygen O vi, O vii, and O viii in IllustrisTNG

132. First results from the IllustrisTNG simulations: the galaxy colour bimodality

133. The ALMA Spectroscopic Survey in the HUDF: the Molecular Gas Content of Galaxies and Tensions with IllustrisTNG and the Santa Cruz SAM

134. First Star-Forming Structures in Fuzzy Cosmic Filaments

135. Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs

136. Galaxy Formation with BECDM -- II. Cosmic Filaments and First Galaxies

137. Baryons in the Cosmic Web of IllustrisTNG - I: gas in knots, filaments, sheets, and voids

138. A moving mesh unstaggered constrained transport scheme for magnetohydrodynamics

139. Galaxy formation with local photoionization feedback – II. Effect of X-ray emission from binaries and hot gas

140. Simulating galactic dust grain evolution on a moving mesh

141. First results from the IllustrisTNG simulations: the stellar mass content of groups and clusters of galaxies

142. First results from the IllustrisTNG simulations: a tale of two elements - chemical evolution of magnesium and europium

143. Simulating Galaxy Formation with the IllustrisTNG Model

144. Non-ideal magnetohydrodynamics on a moving mesh

145. The uniformity and time-invariance of the intra-cluster metal distribution in galaxy clusters from the IllustrisTNG simulations

146. Similar star formation rate and metallicity variability time-scales drive the fundamental metallicity relation

147. Chemical pre-processing of cluster galaxies over the past 10 billion years in the IllustrisTNG simulations

148. A Deep Learning Approach to Galaxy Cluster X-ray Masses

149. The large-scale properties of simulated cosmological magnetic fields

150. First results from the IllustrisTNG simulations: matter and galaxy clustering

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