PPT-Breakout Report on Electronic and Photonic Materials

Author : alexa-scheidler | Published Date : 2016-09-04

Identification for Grand Challenges Ralph Nuzzo Sadasivan Shankar Ack W Joos t August 7 2012 Breakout Electronic and Photonic Materials Chairs Ralph G Nuzzo University

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Breakout Report on Electronic and Photonic Materials: Transcript


Identification for Grand Challenges Ralph Nuzzo Sadasivan Shankar Ack W Joos t August 7 2012 Breakout Electronic and Photonic Materials Chairs Ralph G Nuzzo University of Illinois. Supported by DFG within SFB 634. C. Bouazza, C. Cuno, B. Dietz, T. Klaus, M. Masi, M. Miski-Oglu, . A. Richter. , . F. Iachello, N. Pietralla, L. von Smekal, J. Wambach. 2013 | Institute of Nuclear Physics | SFB 634 | Achim Richter| . A. Maccabe & M. Sato. Park . Vista Hotel. Gatlinburg, Tennessee. September 5-6, 2014. Participants. Dr. . Mitsuhisa. Sato, RIKEN. Barney Maccabe, ORNL. Robert Harrison, BNL. Galen Shipman, ORNL. Denys Bondar and Alexey . Goun. , Princeton University. . Princeton University. Herschel Rabitz, PI. Alexei Goun. Ali . Er. Denys Bondar. Anna Paulson . Bits. Biology. Photonic reagents is chemistry with light. Why Study Electromagnetics?. Uday Khankhoje. Electrical Engineering. IIT Delhi, . 2015-16 . Sem. 2. Why Study Electromagnetism?. Optical . fibres. Radars. Cell . towers. Plasma propulsion. Why Study Electromagnetism?. Bloch-. Polaritons. in Multiple Quantum Well Photonic Crystals. David Goldberg. 1. , Lev I. Deych. 1. , Alexander Lisyansky. 1. , Zhou Shi. 1. , . Vinod. . M. Menon. 1. Vadim. Tokranov. 2. , Mikhail Yakimov. Cognitive Dominance Symposium. In support of Force 2025 and Beyond. Fort Leavenworth, Kansas. April 14, 2015. Cognitive Dominance . Symposium. 1. Release of this information does not imply any commitment or intent on the part of the U.S. government to provide any additional information on any topic presented herein. This briefing is provided with the understanding that the recipient government will make similar information available to the U.S. government upon request.. Neutron number (N). Proton number (Z). University of York. (Replace with institution name) . Nuclear physics in stars. The CNO cycle – catalysts for stars. HotCNO. . Where do heavy elements come from?. . Senior Design Team sddec19-07. Olouwole Eteka,Kossi Egla, Zheyuan Tang,Ugerah Abalu,Hao Wang,Yifu Zhang. Advisor: Dr Meng Lu. Identification of Grand Challenges. Leadership and Industrial Representation. Chair: . Howard Katz, Johns Hopkins University. Speakers (Industry): . Greg Whiting, PARC (industrial . cochair. ); Darin Laird, . Virtual options for group activities. A little review of engagement. The Student Engagement Series, so far:. The Primacy/Recency Effect, When Learning Takes Place. Increase Student Engagement by Leveraging the Learning Management System. https://support.zoom.us/hc/en-us/articles/206476313. Options for Breakout Rooms. How to broadcast to Breakout Rooms. How to pre-assign Breakout rooms . before meeting. Planning next steps. Next Steps We Will Take. Type here. Breakout Group Activity #2:. Planning next steps. Support Needed Going Forward. Type here. Hover over and select to . Join. the desired/assigned room. Once in room, repeat this process to join other breakout rooms. Breakout Room Instructions. Mobile. Desktop. Additional Instructions. Select the blue . Three breakouts. : biomass, atmospheric flux, oceans and wet carbon. The breakout sessions are . self-assigned. We will request a . volunteer to be the lead of each breakout session. Each breakout session should .

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