S. Rajendran Et Al. , "Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory," PHYSICAL MESOMECHANICS , vol.28, no.1, pp.1-22, 2024
Rajendran, S. Et Al. 2024. Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory. PHYSICAL MESOMECHANICS , vol.28, no.1 , 1-22.
Rajendran, S., Loganathan, R., Thangamuni, P., & Yaylacı, M., (2024). Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory. PHYSICAL MESOMECHANICS , vol.28, no.1, 1-22.
Rajendran, Selvamani Et Al. "Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory," PHYSICAL MESOMECHANICS , vol.28, no.1, 1-22, 2024
Rajendran, Selvamani Et Al. "Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory." PHYSICAL MESOMECHANICS , vol.28, no.1, pp.1-22, 2024
Rajendran, S. Et Al. (2024) . "Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory." PHYSICAL MESOMECHANICS , vol.28, no.1, pp.1-22.
@article{article, author={Selvamani Rajendran Et Al. }, title={Vibration Analysis of Magneto-Piezo-Thermoelastic Ceramic-Metal FG Nanobeam using modified nonlocal State Space Strain Gradient Theory}, journal={PHYSICAL MESOMECHANICS}, year=2024, pages={1-22} }