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April 10, 2017

  

Monday, April 10, 2017

Seminars in Research in Biochemistry and Molecular Biology
12:00 PM - 1:00 PM

Bloomberg School of Public Health

Seminars in Research in Biochemistry and Molecular Biology

"Unraveling viral RNA genomes: One segment at a time"

Victoria D'Souza, PhD
Professor
Department of Molecular and Cellular Biology, Harvard University
FIA Foundation, International Road Safety, and the Role of Policy
12:10 PM - 1:20 PM

Please join the Johns Hopkins Center for Injury Research and Policy as we present "Injury Prevention and the Law."

FIA Foundation, International Road Safety, and the Role of Policy
Natalie Draisin, MPH, MBA
Manager, North American Office & UN Representative
FIA Foundation

Hampton House Room 244
If you need additional information, please contact Ms. Edith Jones at ejones10@jhu.edu.
[multiple] Biostatistics Seminar
12:15 PM - 1:15 PM

Bloomberg School of Public Health

Biostatistics Seminar "On Weighted Estimators for Generalizing Average Treatment Effects from a Trial to a Target Population" Dr. Elly Kaizar Department of Statistics Ohio State University
Biostatistics Help: Faculty, Staff, Pre and Post Doc Walk-In Clinic
1:30 PM - 2:30 PM

Biostatistics consulting is available to all Johns Hopkins University faculty, staff, pre and post docs conducting clinical and translational research. 1:30 – 2:30 PM Wolfe Street Building Room: E3142
Angela Pistoia "Blowing-up solutions for Yamabe-type problems."
4:00 PM - 5:00 PM

Homewood

Speaker: Angela Pistoia, (La Sapienza) Abstract: In this talk, I will discuss the existence and multiplicity of blowing-up solutions for linear perturbation of Yamabe problem. I will also present some recent results concerning multiplicity of large conformal metrics with prescribed scalar curvature.
Peter Bonventre "The Homotopy Theory of (Genuine) Equivariant Operads"
4:30 PM - 5:30 PM

Homewood

Speaker: Peter Bonventre, University of Virginia Abstract: The study of equivariant operads is enlivened by the existence of multiple distinct generalizations of E∞-operads, recording which norm maps are available to algebras. These are detected by fixed-point conditions over the graph subgroups of G×Σn, or equivalently by a certain systems of finite H-sets. In this talk, we will encode this complexity homotopically. Specifically, we will define the new combinatorial gadget of G-trees, and show that they inspire a more general algebraic structure, called genuine equivariant operads. We will further show that, for any indexing system \F, the two categories of genuine and non-genuine G-operads can be equipped with appropriate \F-model structures, which are in fact Quillen equivalent.

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