The thermophysical properties of liquid germanium were recently measured both in parabolic flight experiments and on the ISS in the ISS-EML facility. The viscosity measurements differed between the reduced gravity experiments and the literature values. Since the oscillating drop method has been widely used in EML, further exploration into this phenomenon was of interest. Models of the magnetohydrodynamic flow indicated that turbulence was present during the measurement in the ISS-EML facility, which accounts for the observed difference
In this thesis two methods are described to measure the viscosity of a undercooled liquid metal. One...
By means of benchmarking reduced gravity experiments, we have verified the measured viscosity of bin...
The electromagnetic levitation facility on board the International Space Station is used to investig...
The thermophysical properties of liquid germanium were recently measured both in parabolic flight ex...
Oscillating droplet experiments are conducted using the Electromagnetic Levitation (EML) facility un...
Thermophysical properties of highly doped Si50Ge50 melt were measured contactlessly in the electroma...
In oscillating drop experiments, surface oscillations in a molten sample are captured and analyzed t...
This report covers the work to support the measurement of the surface tension and viscosity of under...
The processing of semiconductors based on electromagnetic levitation is a challenge, because this ki...
Thermophysical properties of liquid metals play a significant role in casting and solidification pro...
Electromagnetic levitation under microgravity provides unique opportunities for the investigation of...
Electromagnetic levitation techniques are used in a microgravity environment to allow materials rese...
Electromagnetic levitation experiments provide a powerful tool that allows for the study of nucleati...
Microgravity conditions have advantages of measurement of surface tension and viscosity of metallic ...
In this thesis two methods are described to measure the viscosity of a undercooled liquid metal. One...
In this thesis two methods are described to measure the viscosity of a undercooled liquid metal. One...
By means of benchmarking reduced gravity experiments, we have verified the measured viscosity of bin...
The electromagnetic levitation facility on board the International Space Station is used to investig...
The thermophysical properties of liquid germanium were recently measured both in parabolic flight ex...
Oscillating droplet experiments are conducted using the Electromagnetic Levitation (EML) facility un...
Thermophysical properties of highly doped Si50Ge50 melt were measured contactlessly in the electroma...
In oscillating drop experiments, surface oscillations in a molten sample are captured and analyzed t...
This report covers the work to support the measurement of the surface tension and viscosity of under...
The processing of semiconductors based on electromagnetic levitation is a challenge, because this ki...
Thermophysical properties of liquid metals play a significant role in casting and solidification pro...
Electromagnetic levitation under microgravity provides unique opportunities for the investigation of...
Electromagnetic levitation techniques are used in a microgravity environment to allow materials rese...
Electromagnetic levitation experiments provide a powerful tool that allows for the study of nucleati...
Microgravity conditions have advantages of measurement of surface tension and viscosity of metallic ...
In this thesis two methods are described to measure the viscosity of a undercooled liquid metal. One...
In this thesis two methods are described to measure the viscosity of a undercooled liquid metal. One...
By means of benchmarking reduced gravity experiments, we have verified the measured viscosity of bin...
The electromagnetic levitation facility on board the International Space Station is used to investig...