World Journal of Nano Science and Engineering

World Journal of Nano Science and Engineering

ISSN Print: 2161-4954
ISSN Online: 2161-4962
www.scirp.org/journal/wjnse
E-mail: wjnse@scirp.org
"Vibration of Gold Nano-Beam with Variable Young’s Modulus Due to Thermal Shock"
written by Eman A. N. Al-Lehaibi, Hamdy M. Youssef,
published by World Journal of Nano Science and Engineering, Vol.5 No.4, 2015
has been cited by the following article(s):
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[2] Coupled Influences of Magnetic Field and Several Thermal Loads on Vibration of Thermoelastic Nano-Ceramic (Si3N4) Beam
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[3] Thermo-electrical influence of graphene nano-strip on viscothermoelastic nanobeam vibration
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[4] The vibration of a nanobeam subjected to constant magnetic field and ramp-type heat under non-Fourier heat conduction law based on the Lord-Shulman model
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[5] The vibration of a gold nanobeam under the thermoelasticity fractional-order strain theory based on Caputo–Fabrizio's definition
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[6] The vibration of a nanobeam under generalized thermoviscoelasticity theory based on thermomass motion subjected to ramp-type heat
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[7] Thermo-electrical influence of graphene nano-strip on viscothermoelastic nanobeam vibration based on Lord–Shulman model
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[8] On dynamic modeling of piezomagnetic/flexomagnetic microstructures based on Lord–Shulman thermoelastic model
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[9] The vibration of viscothermoelastic static pre-stress nanobeam based on two-temperature dual-phase-lag heat conduction and subjected to ramp-type heat
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[10] Vibration of a Thermoelastic Microbeam due to the Thermoelectrical Effect of a Strip of Graphene
Mathematical Problems in Engineering, 2022
[11] The vibration of a thermoelastic nanobeam due to thermo-electrical effect of graphene nano-strip under Green-Naghdi type-II model
Journal of Engineering and Thermal …, 2022
[12] The Vibration of a Simply Supported Visco-Thermoelastic Nano-beam of Silicon Nitride Induced by Thermal Shock
Int. J. of Multidisciplinary and Current …, 2022
[13] The vibration of thermoelastic silicon nitride Nanobeam based on green-naghdi theorem type-II subjected to mechanical damage and ramp-type heat
The Journal of Strain …, 2021
[14] Generalized fractional viscothermoelastic nanobeam under the classical Caputo and the new Caputo–Fabrizio definitions of fractional derivatives
2021
[15] The vibration of a viscothermoelastic nanobeam of silicon nitride with variable thermal conductivity induced by ramp-type thermal loading
2021
[16] Characterization of the vibration and strain energy density of a nanobeam under two-temperature generalized thermoelasticity with fractional-order strain theory
Mathematical and Computational Applications, 2021
[17] Numerical analysis of the damage mechanics variable and vibration of a viscothermoelastic microbeam with variable thermal conductivity
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[18] Characterization of the vibration and strain energy density of a nanobeam under two-temperature generalized thermoelasticity with fractional-order strain …
Mathematical and Computational Applications, 2021
[19] The Vibration of a Viscothermoelastic Gold Nanobeam Induced by Different Types of Thermal Loading.
Lehaibi - Umm Al-Qura University Journal of Applied …, 2020
[20] Explicit Quantum Drain Current Model for Symmetric Double Gate MOSFETs
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[21] The Vibration of Nano-Beam Subjected to Thermal Shock and Moving Heat Source with Constant Speed
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[22] Influence of the mechanical damage on vibration of a viscothermoelastic circular microplate resonator based on dual-phase-lag heat conduction
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[23] The vibration of a viscothermoelastic nanobeam of silicon nitride based on dual-phase-lage heat conduction model and subjected to ramp-type heating
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[24] A Study of the Reichardt ETN 30 Parameter using Solvent Molecular Properties Derived from Computation Chemistry and Consideration of the Kamlet and Taft …
Journal of Solution Chemistry, 2020
[25] Fractional Order Vibration of a Thermoelastic Gold (Au) Nanobeam Induced by Ramp-Type Heating.
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[26] Vibration of circular micro-ceramic (Si3N4) plate resonators in the context of the generalized viscothermoelastic dual-phase-lagging theory
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[27] Effect of the speed, the rotation and the magnetic field on the Q-factor of an axially clamped gold micro-beam
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