Pages that link to "Item:Q2870410"
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The following pages link to Size-dependent pull-in instability of torsional nano-actuator (Q2870410):
Displaying 14 items.
- A shear deformable conical shell formulation in the framework of couple stress theory (Q889768) (← links)
- Cylindrical thin-shell model based on modified strain gradient theory (Q1617959) (← links)
- Pull-in instability of multi-phase nanocrystalline silicon beams under distributed electrostatic force (Q1623094) (← links)
- Analysis of conical shells in the framework of coupled stresses theory (Q1627067) (← links)
- Size-dependent rigidities of nanosized torsional elements. (Q1863373) (← links)
- Modeling the instability of electrostatic nano-bridges and nano-cantilevers using modified strain gradient theory (Q2009971) (← links)
- Free vibration analysis of axially functionally graded nanobeam with radius varies along the length based on strain gradient theory (Q2282637) (← links)
- Thermal and surface effects on the pull-in characteristics of circular nanoplate NEMS actuator based on nonlocal elasticity theory (Q2284855) (← links)
- Analytical study on size-dependent static pull-in analysis of clamped-clamped nano-actuators in liquid electrolytes (Q2289308) (← links)
- Effects of size-dependent elasticity on stability of nanotweezers (Q2338995) (← links)
- Microstructure-dependent dynamic stability analysis of torsional NEMS scanner in van der Waals regime (Q2818090) (← links)
- Effect of surface layer thickness on buckling and vibration of nonlocal nanowires (Q5964464) (← links)
- Electro-mechanical responses of transversely isotropic piezoelectric nano-plate based on the nonlocal strain gradient theory with flexoelectric effect (Q6058578) (← links)
- Modeling the effects of material properties on the pull‐in instability of nonlocal functionally graded nano‐actuators (Q6064992) (← links)