His Composite material study frequently draws connections between adjacent fields such as Thermal conductivity and Thermal conduction. His Thermal conductivity study often links to related topics such as Composite material. Phase (matter) and Thermal conduction are all intertwined in Quantum mechanics research. In most of his Phase (matter) studies, his work intersects topics such as Quantum mechanics. In his works, Liqiu Wang undertakes multidisciplinary study on Nanotechnology and Microfluidics. He integrates many fields, such as Microfluidics and Nanotechnology, in his works. He regularly ties together related areas like Heat transfer in his Mechanics studies. His studies link Mechanics with Heat transfer. His Thermodynamics study frequently intersects with other fields, such as Thermal.
His Thermodynamics study frequently intersects with other fields, such as Thermal conduction, Heat transfer and Thermal. In his research, he performs multidisciplinary study on Nanotechnology and Microfluidics. While working in this field, Liqiu Wang studies both Microfluidics and Nanotechnology. He undertakes multidisciplinary investigations into Mechanics and Geometry in his work. In his works, Liqiu Wang undertakes multidisciplinary study on Geometry and Mechanics. Liqiu Wang performs integrative Quantum mechanics and Thermodynamics research in his work. He combines Nanoparticle and Nanofluid in his research. Liqiu Wang integrates many fields in his works, including Nanofluid and Nanoparticle.
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Precision Measurement of the Proton Flux in Primary Cosmic Rays from Rigidity 1 GV to 1.8 TV with the Alpha Magnetic Spectrometer on the International Space Station
M. Aguilar;D. Aisa;B. Alpat;A. Alvino.
Physical Review Letters (2014)
Passive and active droplet generation with microfluidics: a review
Pingan Zhu;Liqiu Wang.
Lab on a Chip (2017)
High Statistics Measurement of the Positron Fraction in Primary Cosmic Rays of 0.5-500 GeV with the Alpha Magnetic Spectrometer on the International Space Station
L. Accardo;M. Aguilar;D. Aisa;D. Aisa;B. Alpat.
Physical Review Letters (2014)
Electron and Positron Fluxes in Primary Cosmic Rays Measured with the Alpha Magnetic Spectrometer on the International Space Station
M. Aguilar;D. Aisa;A. Alvino;G. Ambrosi.
Physical Review Letters (2014)
Antiproton Flux, Antiproton-to-Proton Flux Ratio, and Properties of Elementary Particle Fluxes in Primary Cosmic Rays Measured with the Alpha Magnetic Spectrometer on the International Space Station
M. Aguilar;L. Ali Cavasonza;B. Alpat;G. Ambrosi.
Physical Review Letters (2016)
Precision Measurement of the $\left({e}^{+}+{e}^{-} ight)$ Flux in Primary Cosmic Rays from 0.5 GeV to 1 TeV with the Alpha Magnetic Spectrometer on the International Space Station
M. Aguilar;A. Piluso;A. Lebedev;U. Becker.
Physical Review Letters (2014)
Review of Heat Conduction in Nanofluids
Jing Fan;Liqiu Wang.
Journal of Heat Transfer-transactions of The Asme (2011)
Precision Measurement of the Boron to Carbon Flux Ratio in Cosmic Rays from 1.9 GV to 2.6 TV with the Alpha Magnetic Spectrometer on the International Space Station.
M. Aguilar;L. Ali Cavasonza;G. Ambrosi;L. Arruda.
Physical Review Letters (2016)
Heat Conduction: Mathematical Models and Analytical Solutions
Liqiu Wang;Xuesheng Zhou;Xiaohao Wei.
(2008)
Observation of the Identical Rigidity Dependence of He, C, and O Cosmic Rays at High Rigidities by the Alpha Magnetic Spectrometer on the International Space Station
M. Aguilar;O. Demakov;Y. S. Lu;U. Becker.
Physical Review Letters (2017)
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