Timothy Weihs

Affiliations: 
Johns Hopkins University, Baltimore, MD 
Area:
Biomedical Engineering, Neuroscience Biology, Biochemistry
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"Timothy Weihs"
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Parents

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William D. Nix grad student
John B. Pethica post-doc Oxford (Physics Tree)

Children

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Paul Masih Das research assistant Johns Hopkins (Physics Tree)
Suhas Eswarappa Prameela grad student Johns Hopkins
Sreenivas Raguraman grad student 2021- Johns Hopkins
Kerri J. Blobaum grad student 2002 Johns Hopkins
Jennifer J. Hooper grad student 2003 Johns Hopkins
Alexis C. Lewis grad student 2003 Johns Hopkins
Michael E. Reiss grad student 2003 Johns Hopkins
Stephen J. Spey grad student 2006 Johns Hopkins
Gregory M. Fritz grad student 2011 Johns Hopkins
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Publications

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Eswarappa Prameela S, Ramesh KT, Weihs TP. (2021) Young scholars benefit from collaboration. Nature Materials
Eswarappa Prameela S, McGuiggan PM, Brusini A, et al. (2020) Looking at education through the microscope. Nature Reviews. Materials. 1-3
Valentino GM, Shetty PP, Chauhan A, et al. (2020) Nanotwin formation in Ni–Mo–W alloys deposited by dc magnetron sputtering Scripta Materialia. 186: 247-252
Prameela SE, Lipkin E, Chen J, et al. (2020) Enhanced Precipitation and Recrystallization in a Mg-Zn Alloy During Low-Temperature Extrusion Procedia Manufacturing. 47: 1476-1480
Valentino GM, Krogstad JA, Weihs TP, et al. (2020) Tailoring the coefficient of thermal expansion of ternary nickel alloys through compositional control and non-contact measurements Journal of Alloys and Compounds. 833: 155024
Emigh MG, McAuliffe RD, Chen C, et al. (2018) Influence of a nanotwinned, nanocrystalline microstructure on aging of a Ni-25Mo-8Cr superalloy Acta Materialia. 156: 411-419
Sim G, Krogstad JA, Xie KY, et al. (2018) Tailoring the mechanical properties of sputter deposited nanotwinned nickel-molybdenum-tungsten films Acta Materialia. 144: 216-225
Sim GD, Krogstad JA, Reddy KM, et al. (2017) Nanotwinned metal MEMS films with unprecedented strength and stability. Science Advances. 3: e1700685
Zhao L, Ryan SM, Lin S, et al. (2017) Combining a distributed flow manifold and 3D woven metallic lattices to enhance fluidic and thermal properties for heat transfer applications International Journal of Heat and Mass Transfer. 108: 2169-2180
Zhao L, Ryan SM, Ortega JK, et al. (2016) Experimental investigation of 3D woven Cu lattices for heat exchanger applications International Journal of Heat and Mass Transfer. 96: 296-311
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