David A. Weitz

Affiliations: 
Harvard University, Cambridge, MA, United States 
Area:
condensed matter, colloidal dispersions, rheology
Website:
http://www.physics.harvard.edu/people/facpages/weitz.html
Google:
"David Weitz"
Bio:

http://www.nasonline.org/member-directory/members/20012053.html
http://weitzlab.seas.harvard.edu/
https://history.aip.org/phn/11611005.html

Mean distance: 12.71
 
SNBCP
Cross-listing: Chemistry Tree

Parents

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Michael Tinkham grad student 1978 Harvard

Children

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Jingshan S. Du research assistant 2014-2015 Harvard (Chemistry Tree)
Thomas G. Mason grad student 1995 Princeton
Sophie Pautot grad student 2002 Harvard
Vikram Prasad grad student 2002 Harvard
Vernita D. Gordon grad student 2003 Harvard
Megan T. Valentine grad student 2003 Harvard
Bivash R. Dasgupta grad student 2004 Harvard
Margaret L. Gardel grad student 2004 Harvard
Suliana Manley grad student 2004 Harvard
Jacinta C. Conrad grad student 2005 Harvard
Shang-You Tee grad student 2005 Harvard
Clifford P. Brangwynne grad student 2007 Harvard (Chemistry Tree)
Jiayu Liu grad student 2007 Harvard
Andrew S. Utada grad student 2007 Harvard
Peter J. Lu grad student 2008 Harvard
Katherine J. Humphry grad student 2009 Harvard
Yi-Chia Lin grad student 2009 Harvard
Karen E. Kasza grad student 2010 Harvard
Ho C. Shum grad student 2010 Harvard
David A. Vader grad student 2010 Harvard
Bolu Wang grad student 2010 Harvard
Melaku Muluneh grad student 2012 Harvard
Kisun Yoon grad student 2012 Harvard
Donald M. Aubrecht grad student 2013 Harvard
Sujit S. Datta grad student 2013 Harvard
Louise M. Jawerth grad student 2013 Harvard
Tina Lin grad student 2013 Harvard
Matthew K. Thomas grad student 2013 Harvard
Emily R. Russell grad student 2014 Harvard
Jing Xia grad student 2013-2020 Harvard
Liheng Cai post-doc Harvard
Daeyeon Lee post-doc Penn (Chemistry Tree)
André Studart post-doc (Chemistry Tree)
Liyuan Zhang post-doc School of Engineering and Applied Sciences
Weixia Zhang post-doc 2014- Harvard (Chemistry Tree)
Shao-Xiong Lennon Luo post-doc 2023- Harvard (Chemistry Tree)
Douglas Jack Durian post-doc 1989-1991 Exxon
Eric R. Weeks post-doc 1998-2000 Harvard
You-Yeon Won post-doc 2001-2003 Harvard (Chemistry Tree)
Eric R. Dufresne post-doc 2002-2004 Harvard
Laura J. Kaufman post-doc 2003-2004 Harvard (Chemistry Tree)
Peter Schall post-doc 2002-2005 Harvard
Sarah Köster post-doc 2006-2008 Harvard
Amber T. Krummel post-doc 2007-2010 Harvard (Chemistry Tree)
Shmuel M. Rubinstein post-doc 2009-2013 Harvard
Hyomin Lee post-doc 2014-2017 Harvard (Chemistry Tree)
Weichao Shi post-doc 2015-2017 (Chemistry Tree)
Jonathan E. Didier post-doc 2010-2019 Harvard (Biomechanics Tree)
Douglas V. Amato research scientist 2016 Harvard (Chemistry Tree)
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Publications

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Nan L, Zhang H, Weitz DA, et al. (2024) Development and future of droplet microfluidics. Lab On a Chip
Svetlizky I, Kim S, Weitz DA, et al. (2023) Dislocation interactions during plastic relaxation of epitaxial colloidal crystals. Nature Communications. 14: 5760
Zhang Y, Zhao X, Han P, et al. (2023) Rock-on-a-chip: "Seeing" the association/disassociation of an adaptive polymer in solutions flowing through porous media. Lab On a Chip
Zath GK, Sperling RA, Hoffman CW, et al. (2022) Rapid parallel generation of a fluorescently barcoded drop library from a microtiter plate using the plate-interfacing parallel encapsulation (PIPE) chip. Lab On a Chip
Zheng W, Zhao S, Yin Y, et al. (2022) High-throughput, single-microbe genomics with strain resolution, applied to a human gut microbiome. Science (New York, N.Y.). 376: eabm1483
Koveal D, Rosen PC, Meyer DJ, et al. (2022) A high-throughput multiparameter screen for accelerated development and optimization of soluble genetically encoded fluorescent biosensors. Nature Communications. 13: 2919
Zhang H, Zhang L, An C, et al. (2022) Large-scale single-cell encapsulation in microgels through metastable droplet-templating combined with microfluidic-integration. Biofabrication
King EM, Wang Z, Weitz DA, et al. (2022) Correlation Tracking: Using simulations to interpolate highly correlated particle tracks. Physical Review. E. 105: 044608
Wu H, Shen Y, Sivagurunathan S, et al. (2022) Vimentin intermediate filaments and filamentous actin form unexpected interpenetrating networks that redefine the cell cortex. Proceedings of the National Academy of Sciences of the United States of America. 119: e2115217119
Xia J, Liu ZY, Han ZY, et al. (2022) Regulation of cell attachment, spreading, and migration by hydrogel substrates with independently tunable mesh size. Acta Biomaterialia
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