Updated ANC constraints on the 12C(alpha,gamma)16O S-factor favor lower values than prior evaluations and imply a black-hole mass-gap lower edge of 61-75 solar masses.
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New gas-phase measurements of C 1s binding energies in anthrone agree with ΔSCF calculations, and a benchmark of 44 core levels in molecules with 10-40 atoms yields a mean absolute error of 0.19 eV.
Review of the fin-to-limb transition proposing a systems biology approach using theory, modeling, and experiments to provide a mechanical explanation for differences between fins and limbs and resolve the homology debate.
Emergence bias is defined as the molecular tendency of sequences to be predisposed toward or against gaining new functions upon mutation, synthesized from prior studies on promoters, enhancers, and de novo proteins.
Models initial-state energy loss, nuclear shadowing, and final-state absorption on J/ψ and ψ(2S) production in p+A collisions, compares to SPS/Fermilab/HERA-B data, and extrapolates absorption levels for NA60+ and CBM.
citing papers explorer
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Nuclear Constraints on $^{12}$C$(\alpha,\gamma)^{16}$O and Their Impact on Black-Hole Mass Predictions
Updated ANC constraints on the 12C(alpha,gamma)16O S-factor favor lower values than prior evaluations and imply a black-hole mass-gap lower edge of 61-75 solar masses.
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Does the total energy difference method for modelling core level photoemission fail for bigger molecules?
New gas-phase measurements of C 1s binding energies in anthrone agree with ΔSCF calculations, and a benchmark of 44 core levels in molecules with 10-40 atoms yields a mean absolute error of 0.19 eV.
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Systems biology approach to the origin of the tetrapod limb
Review of the fin-to-limb transition proposing a systems biology approach using theory, modeling, and experiments to provide a mechanical explanation for differences between fins and limbs and resolve the homology debate.
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Emergence biases in molecular evolution
Emergence bias is defined as the molecular tendency of sequences to be predisposed toward or against gaining new functions upon mutation, synthesized from prior studies on promoters, enhancers, and de novo proteins.
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Charmonium suppression in fixed target proton-nucleus collisions
Models initial-state energy loss, nuclear shadowing, and final-state absorption on J/ψ and ψ(2S) production in p+A collisions, compares to SPS/Fermilab/HERA-B data, and extrapolates absorption levels for NA60+ and CBM.