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Anup K. Gangopadhyay
Anup K. Gangopadhyay
Washington University in St. Louis
Materials science
Supercooling
Nucleation
Thermal expansion
Amorphous metal
5
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3
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0
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Demonstration of the effect of stirring on nucleation from experiments on the International Space Station using the ISS-EML facility.
2021
arXiv: Soft Condensed Matter
Anup K. Gangopadhyay
M E Sellers
G.P. Bracker
Dirk Holland-Moritz
D. C. Van Hoesen
S.W. Koch
Peter Galenko
A. K. Pauls
R. W. Hyers
K. F. Kelton
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Demonstration of the effect of stirring on nucleation from experiments on the International Space Station using the ISS-EML facility.
2021
Anup K. Gangopadhyay
M. E. Sellers
G. P. Bracker
Dirk Holland Moritz
D. C. Van Hoesen
S. W. Koch
Peter Galenko
A. K. Pauls
Robert W. Hyers
Kenneth F. Kelton
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Link between volume, thermal expansion, and bulk metallic glass formability
2020
Physical Review Materials
Anup K. Gangopadhyay
C. E. Pueblo
K. F. Kelton
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Maximum supercooling studies in Ti39.5Zr39.5Ni21, Ti40Zr30Ni30, and Zr80Pt20 liquids-Connecting liquid structure and the nucleation barrier.
2019
Journal of Chemical Physics
M. E. Sellers
D. C. Van Hoesen
Anup K. Gangopadhyay
Kenneth F. Kelton
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Correlation of the fragility of metallic liquids with the high temperature structure, volume, and cohesive energy
2017
arXiv: Soft Condensed Matter
Anup K. Gangopadhyay
C. E. Pueblo
R. Dai
M. L. Johnson
R. Ashcraft
D. C. Van Hoesen
M. E. Sellers
Kenneth F. Kelton
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