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New Faculty<br />

Vivek Shenoy David Issadore<br />

Pr<strong>of</strong>essor <strong>of</strong> Materials Assistant Science Pr<strong>of</strong>essor <strong>and</strong> <strong>of</strong> <strong>Engineering</strong><br />

Bioengineering<br />

David J. Srolovitz Ladislav Kavan<br />

Joseph Bordogna Assistant Pr<strong>of</strong>essor Pr<strong>of</strong>essor <strong>Engineering</strong> <strong>of</strong> Computer <strong>and</strong> <strong>and</strong> <strong>Applied</strong> Information Science Science<br />

Pr<strong>of</strong>essor <strong>of</strong> Materials Science <strong>and</strong> <strong>Engineering</strong> <strong>and</strong><br />

Ph.D. in Physics, Ph.D. in 2009 in <strong>Applied</strong> Physics, Harvard University Pr<strong>of</strong>essor <strong>of</strong> Mechanical Ph.D. in 2007 <strong>Engineering</strong> Computer <strong>and</strong> <strong>Applied</strong> Science, Mechanics<br />

The Ohio State Postdoctoral UniversityFellowship, The Center for Systems Biology,<br />

Czech Technical University<br />

Massachusetts General Hospital<br />

Ph.D. in Materials Researcher, Science Disney <strong>and</strong> <strong>Engineering</strong>,<br />

Interactive Studios <strong>and</strong> ETH Zurich<br />

Dr. Shenoy is a world leader in <strong>the</strong> mechanics <strong>and</strong> physics<br />

University <strong>of</strong> Pennsylvania<br />

<strong>of</strong> nanostructure Dr. Issadore’s formation. research He has focuses used rigorous on <strong>the</strong> analytical development <strong>of</strong><br />

Dr. Kavan explores new approaches to real-time computer<br />

methods <strong>and</strong> micro- multiscale <strong>and</strong> nanoscale modeling molecular techniques, sensors ranging <strong>and</strong> from <strong>the</strong>ir Dr. Srolovitz graphics is <strong>the</strong> inaugural <strong>and</strong> animation. Joseph Bordogna In his most Pr<strong>of</strong>essor recent work, he studied<br />

atomistic density applications functional to high <strong>the</strong>ory impact to continuum problems methods, in medicine. to His lab <strong>of</strong> <strong>Engineering</strong> how <strong>and</strong> to <strong>Applied</strong> take a st<strong>and</strong>ard Science physics-based at <strong>the</strong> University deformation <strong>of</strong> model<br />

gain deep physical takes a insight multidisciplinary into myriad approach, important integrating problems in technology Pennsylvania, <strong>and</strong> <strong>and</strong> transform holds a joint it into appointment a geometric in “deformer,” <strong>the</strong> Departments<br />

<strong>of</strong> Materials closed-form Science algorithm <strong>and</strong> <strong>Engineering</strong> that can produce <strong>and</strong> Mechanical virtually <strong>the</strong> same<br />

i.e., a simple<br />

materials science from microelectronics, <strong>and</strong> mechanics. micr<strong>of</strong>luidics, nanomaterials <strong>and</strong><br />

molecular targeting into portable, low-cost hybrid microchips. <strong>Engineering</strong> result, <strong>and</strong> <strong>Applied</strong> several Mechanics. orders <strong>of</strong> magnitude He has also faster been than named <strong>the</strong> original<br />

Dr. Shenoy’s Using current <strong>the</strong>se research miniaturized focuses systems, on developing Dr. Issadore envisions <strong>the</strong> Founding formulation. Director <strong>of</strong> <strong>the</strong> In his Penn previous Institute work, <strong>of</strong> Computational<br />

he applied techniques<br />

<strong>the</strong>oretical concepts that medical <strong>and</strong> diagnostics numerical methods can be liberated to underst<strong>and</strong> from <strong>the</strong> labor- Science. He from joins abstract Penn <strong>Engineering</strong> <strong>and</strong> linear following algebra, a spectral post in methods <strong>and</strong> finite<br />

<strong>the</strong> basic principles intensive, that centralized control <strong>the</strong> facilities behavior in which <strong>of</strong> both <strong>the</strong>y are currently Singapore where elements he served to improve as <strong>the</strong> upon Executive technology Director used <strong>of</strong> in <strong>the</strong> game <strong>and</strong><br />

engineering housed <strong>and</strong> biological <strong>and</strong> brought systems. directly A significant to <strong>the</strong> clinic, challenge thus <strong>of</strong>fering<br />

<strong>the</strong> Institute film <strong>of</strong> High industries. Performance One such Computing, example <strong>and</strong> is dual quaternion skinning,<br />

modeling <strong>the</strong>se tremendous systems is benefits that important for patients. processes involve<br />

Scientific Director an algorithm <strong>of</strong> A*STAR’s for skeletal Science shape <strong>and</strong> deformation <strong>Engineering</strong> which corrects<br />

coupling <strong>of</strong> both small-scale (atomic or single molecule)<br />

Research Council. for deficiencies <strong>of</strong> previous linear blending methods.<br />

phenomena In <strong>and</strong> his long-range previous work, (elastic, Dr. electromagnetic)<br />

Issadore has developed an<br />

interactions electronically over length scales programmable <strong>of</strong> hundreds micr<strong>of</strong>luidic nanometers. platform that Dr. Srolovitz is a leading scholar in <strong>the</strong>oretical <strong>and</strong><br />

The goal <strong>of</strong> his controls group’s individual work is to cells, address a portable <strong>the</strong>se NMR issues system by that detects computational materials science <strong>and</strong> related disciplines,<br />

combining atomic bacteria scale in sputum simulation samples methods <strong>and</strong> a with micro-Hall continuum chip that especially as <strong>the</strong>y apply to underst<strong>and</strong>ing defects in materials,<br />

or mesoscale sensitively <strong>the</strong>ories <strong>and</strong> measures by adapting circulating insights tumor from cells in blood. microstructure, morphology <strong>and</strong> <strong>the</strong>ir temporal evolution.<br />

condensed matter physics, solid mechanics, chemistry,<br />

He is particularly well known for his work on surface<br />

materials science <strong>and</strong> applied ma<strong>the</strong>matics.<br />

stability, grain growth <strong>and</strong> film growth.<br />

PENN ENGINEERING n 35

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