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Titlebook: Next Generation Systems and Networks; Proceedings of BITS Hari Om Bansal,Pawan K. Ajmera,Chandra Shekhar Conference proceedings 2023 The E

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Antarip Giri,Akash Dixit,Sidheshwar Harkal,Uday Satya Kiran Gubbala,Niranjan Mehendales are distributed in the area with seismic intensity less than the JMA scale 5+. From the characteristics of the surface fault ruptures, we conclude that the ruptures were triggered by normal faulting with right-lateral slip during the mainshock, but not simple lateral spreading caused by shaking.
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ng sites created on the surface of these oxides are resistant to O.at 430°C and to traces of NH.. The spilled over hydrogen, adsorbed on the surface of these oxides inhibits the hydrogenation of the first dose of ethylene and is responsible for the induction period observed at the beginning of the c
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Madhuri Agrawal,Shikha Agrawalhe monolayers of Ar, Kr, Xe and CH4 adsorbed upon the basal face of numerous layered dihalides. 2D phase transitions are observed, which, in addition to being of intrinsic interest, are particularly helpful in the molecular interpretation of the thermodynamic results. The structure and the thermodyn
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Darsh Patel,Hitika Dalwadi,Hetvi Patel,Prasham Soni,Yash Battul,Harsh Kapadiahe monolayers of Ar, Kr, Xe and CH4 adsorbed upon the basal face of numerous layered dihalides. 2D phase transitions are observed, which, in addition to being of intrinsic interest, are particularly helpful in the molecular interpretation of the thermodynamic results. The structure and the thermodyn
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Bhavika Gandhi,Neha Jaitly,Khushi Vats,Pinki Sagarctivation and deactivation of these centers are governed by the presence of an electric dipole near an acceptor-type defect. This dipole owes its origin to water molecules adsorbed on the surface of a sample, which diffuse through the oxide film. We shall not discuss the nature of the electric dipol
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Puneet Mishra,H. D. Mathurctivation and deactivation of these centers are governed by the presence of an electric dipole near an acceptor-type defect. This dipole owes its origin to water molecules adsorbed on the surface of a sample, which diffuse through the oxide film. We shall not discuss the nature of the electric dipol
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