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Chris Sander

Researcher at Harvard University

Publications -  730
Citations -  273726

Chris Sander is an academic researcher from Harvard University. The author has contributed to research in topics: Large Hadron Collider & Protein structure. The author has an hindex of 178, co-authored 713 publications receiving 233287 citations. Previous affiliations of Chris Sander include Purdue University & University of Leeds.

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Performance of the missing transverse momentum triggers for the ATLAS detector during Run-2 data taking

Georges Aad, +3015 more
TL;DR: In this article, a study of the trigger performance and comparisons with simulations show that these changes resulted in event selection efficiencies of > 98% for this period, meeting and in some cases exceeding the performance of similar triggers in earlier run periods, while at the same time keeping the necessary bandwidth within acceptable limits.
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Search for bottom-squark pair production with the ATLAS detector in final states containing Higgs bosons, b-jets and missing transverse momentum

Georges Aad, +3005 more
TL;DR: The results of a search for the pair production of the lightest supersymmetric partner of the bottom quark using 139 fb$−1}$ of proton-proton data collected at 13 TeV by the ATLAS detector is reported in this article.
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Degeneracy of the information contained in amino acid sequences: evidence from overlaid genes.

TL;DR: It is shown that the very existence of viral overlays allows to derive a lower limit for the magnitude of this degeneracy: the degeneracy is equal to, or greater than fourfold; on the average, at each position of the chain a choice of 1 out of 5 or less amino acids is necessary for constructing a protein with a specified function.
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Search for a scalar partner of the top quark in the all-hadronic tt‾ plus missing transverse momentum final state at √s=13 TeV with the ATLAS detector

Georges Aad, +2949 more
TL;DR: A search for direct pair production of scalar partners of the top quark (top squarks or scalar third-generation up-type leptoquarks) in the all-hadronic t (t) over bar plus missing transverse momen was conducted in this paper.
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The structure of ColE1 rop in solution.

TL;DR: The structure of the ColE1 repressor of primer (rop) protein in solution was determined from the proton nuclear magnetic resonance data by a combined use of distance geometry and restrained molecular dynamics calculations with low internal energy and virtually no violations of the experimental distance restraints.