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Douglas M Matson

Showing results (1-10 of 11) with videos related to

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NPJ Microgravity|November 28, 2018
Retained free energy as a driving force for phase transformation during rapid solidification of stainless steel alloys in microgravityDouglas M Matson
The Journal of Chemical Thermodynamics|May 28, 2020
Hypercooling limit, heat of fusion, and temperature-dependent specific heat of Fe-Cr-Ni meltsSangho Jeon, Michael P Sansoucie, Douglas M Matson
Annals of the New York Academy of Sciences|November 25, 2006
Microgravity experiments on the effect of internal flow on solidification of Fe-Cr-Ni stainless steelsAlaina B Hanlon, Douglas M Matson, Robert W Hyers
NPJ Microgravity|April 3, 2019
Numerical representations for flow velocity and shear rate inside electromagnetically levitated droplets in microgravityXiao Xiao, Jonghyun Lee, Robert W Hyers, et al.
NPJ Microgravity|March 21, 2020
MHD surrogate model for convection in electromagnetically levitated molten metal droplets processed using the ISS-EML facilityEvan B Baker, Jannatun Nawer, Xiao Xiao, et al.
The Journal of Chemical Physics|January 22, 2021
Density, excess volume, and structure of Fe-Cr-Ni meltsSangho Jeon, Michael P Sansoucie, Olga Shuleshova, et al.
Annals of the New York Academy of Sciences|January 13, 2005
Convection in containerless processingRobert W Hyers, Douglas M Matson, Kenneth F Kelton, et al.
Annals of the New York Academy of Sciences|January 13, 2005
Contrasting electrostatic and electromagnetic levitation experimental results for transformation kinetics of steel alloysDouglas M Matson, David J Fair, Robert W Hyers, et al.
NPJ Microgravity|October 6, 2021
Impact of convection on the damping of an oscillating droplet during viscosity measurement using the ISS-EML facilityXiao Xiao, Jürgen Brillo, Jonghyun Lee, et al.
NPJ Microgravity|May 24, 2023
Uncertainty analysis and performance evaluation of thermophysical property measurement of liquid Au in microgravityJannatun Nawer, Takehiko Ishikawa, Hirohisa Oda, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
NPJ Microgravity|November 28, 2018
Retained free energy as a driving force for phase transformation during rapid solidification of stainless steel alloys in microgravityDouglas M Matson
The Journal of Chemical Thermodynamics|May 28, 2020
Hypercooling limit, heat of fusion, and temperature-dependent specific heat of Fe-Cr-Ni meltsSangho Jeon, Michael P Sansoucie, Douglas M Matson
Annals of the New York Academy of Sciences|November 25, 2006
Microgravity experiments on the effect of internal flow on solidification of Fe-Cr-Ni stainless steelsAlaina B Hanlon, Douglas M Matson, Robert W Hyers
NPJ Microgravity|April 3, 2019
Numerical representations for flow velocity and shear rate inside electromagnetically levitated droplets in microgravityXiao Xiao, Jonghyun Lee, Robert W Hyers, et al.
NPJ Microgravity|March 21, 2020
MHD surrogate model for convection in electromagnetically levitated molten metal droplets processed using the ISS-EML facilityEvan B Baker, Jannatun Nawer, Xiao Xiao, et al.
The Journal of Chemical Physics|January 22, 2021
Density, excess volume, and structure of Fe-Cr-Ni meltsSangho Jeon, Michael P Sansoucie, Olga Shuleshova, et al.
Annals of the New York Academy of Sciences|January 13, 2005
Convection in containerless processingRobert W Hyers, Douglas M Matson, Kenneth F Kelton, et al.
Annals of the New York Academy of Sciences|January 13, 2005
Contrasting electrostatic and electromagnetic levitation experimental results for transformation kinetics of steel alloysDouglas M Matson, David J Fair, Robert W Hyers, et al.
NPJ Microgravity|October 6, 2021
Impact of convection on the damping of an oscillating droplet during viscosity measurement using the ISS-EML facilityXiao Xiao, Jürgen Brillo, Jonghyun Lee, et al.
NPJ Microgravity|May 24, 2023
Uncertainty analysis and performance evaluation of thermophysical property measurement of liquid Au in microgravityJannatun Nawer, Takehiko Ishikawa, Hirohisa Oda, et al.
Pageof 2