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Wei Ji
Researcher at Renmin University of China
Publications - 666
Citations - 26973
Wei Ji is an academic researcher from Renmin University of China. The author has contributed to research in topics: Medicine & Monolayer. The author has an hindex of 64, co-authored 550 publications receiving 20154 citations. Previous affiliations of Wei Ji include East China University of Science and Technology & Huazhong Agricultural University.
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Study on a novel energy-saving cryogenic pre-treatment equipment for walnut kernel peeling
TL;DR: In this article, the difference of thermal expansion coefficient between the seed and seed coat of walnut kernels leads to the separation of the two when being deeply cooled directly using liquid nitrogen (LN2, temperature −196 °C).
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Feasibility Assessment of a Natural-Circulation Salt Irradiation Loop in the Advanced Test Reactor
TL;DR: In this article, the authors consider the integrated effect of neutron flux and fission power on the performance of a Molten-salt nuclear power plant and propose an ideal experiment that considers the effect of fission pro
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Reduced-order modeling of neutron transport separated in energy by Proper Generalized Decomposition with applications to nuclear reactor physics
TL;DR: An a priori Reduced-Order Model of neutron transport separated in energy by Proper Generalized Decomposition is formulated and implemented, providing an alternative means of approximation to cross section condensation, preferable in that it introduces neither a loss of resolution nor irrecoverable error.
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Toplayer-dependent crystallographic orientation imaging in the bilayer two-dimensional materials with transverse shear microscopy
Sabir Hussain,Sabir Hussain,Sabir Hussain,Rui Xu,Kunqi Xu,Le Lei,Shuya Xing,Jianfeng Guo,Haoyu Dong,Adeel Liaqat,Adeel Liaqat,Rashid Iqbal,Rashid Iqbal,Muhammad Ahsan Iqbal,Muhammad Ahsan Iqbal,Shangzhi Gu,Feiyue Cao,Yan Jun Li,Yasuhiro Sugawara,Fei Pang,Wei Ji,Liming Xie,Liming Xie,Shanshan Chen,Zhihai Cheng +24 more
TL;DR: In this article, a transverse shear microscopy (TSM) imaging of 2D materials with three typical nanomechanical systems, namely, MoS2 on the amorphous SiO2/Si, G2O 3 on the crystallized Al2O3, and G3 on the polysilicon SiO 2/Si/Si was performed.
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Two-dimensional Dirac-line semimetals resistant to strong spin-orbit coupling.
Deping Guo,Peng-Jie Guo,Shijing Tan,Min Feng,Limin Cao,Zhengxing Liu,Kai Liu,Zhong-Yi Lu,Wei Ji +8 more
TL;DR: In this article , a 2D-DNLSM in odd-atomic-layer Bi (the brick phase, another Bi allotrope), whose robustness against strong spin-orbit coupling (SOC) is protected by the little co-group C_2v \times Z^T_2, the unique protecting symmetry we found in 2D.