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Collapse of experimental data (solid symbols) and numerical data... |  Download Scientific Diagram
Collapse of experimental data (solid symbols) and numerical data... | Download Scientific Diagram

Contour plots of the potential V 1 (ρ; x, y), Eq. (31a), [lower... |  Download Scientific Diagram
Contour plots of the potential V 1 (ρ; x, y), Eq. (31a), [lower... | Download Scientific Diagram

OpenKIM · EAM Dynamo AcklandTichyVitek 1987 Au MO_104891429740_005  MO_104891429740 · Interatomic Potentials and Force Fields
OpenKIM · EAM Dynamo AcklandTichyVitek 1987 Au MO_104891429740_005 MO_104891429740 · Interatomic Potentials and Force Fields

Efficiently Calculating Anharmonic Frequencies of Molecular Vibration by  Molecular Dynamics Trajectory Analysis | ACS Omega
Efficiently Calculating Anharmonic Frequencies of Molecular Vibration by Molecular Dynamics Trajectory Analysis | ACS Omega

Mathematics | Free Full-Text | Recovering Heat Source from Fourth-Order  Inverse Problems by Weighted Gradient Collocation | HTML
Mathematics | Free Full-Text | Recovering Heat Source from Fourth-Order Inverse Problems by Weighted Gradient Collocation | HTML

Method of Moments and T-matrix Hybrid
Method of Moments and T-matrix Hybrid

Quantum Reports | Free Full-Text | Displaced Harmonic Oscillator V ∼  min [(x + d)2, (x − d)2] as a Benchmark Double-Well Quantum Model |  HTML
Quantum Reports | Free Full-Text | Displaced Harmonic Oscillator V ∼ min [(x + d)2, (x − d)2] as a Benchmark Double-Well Quantum Model | HTML

Efficiently Calculating Anharmonic Frequencies of Molecular Vibration by  Molecular Dynamics Trajectory Analysis | ACS Omega
Efficiently Calculating Anharmonic Frequencies of Molecular Vibration by Molecular Dynamics Trajectory Analysis | ACS Omega

Analytic Solutions of the Helmholtz Equation for Some Polygons with 45  Degree Angles - Wolfram Demonstrations Project
Analytic Solutions of the Helmholtz Equation for Some Polygons with 45 Degree Angles - Wolfram Demonstrations Project

Nanomaterials | Free Full-Text | Effects of Intense Laser Field on  Electronic and Optical Properties of Harmonic and Variable Degree  Anharmonic Oscillators | HTML
Nanomaterials | Free Full-Text | Effects of Intense Laser Field on Electronic and Optical Properties of Harmonic and Variable Degree Anharmonic Oscillators | HTML

Computation | Free Full-Text | A Physically Consistent Model for Forced  Torsional Vibrations of Automotive Driveshafts | HTML
Computation | Free Full-Text | A Physically Consistent Model for Forced Torsional Vibrations of Automotive Driveshafts | HTML

Coupled effects of magnetic field, number of walls, geometric imperfection,  temperature change, and boundary conditions on nonlocal nonlinear vibration  of carbon nanotubes resting on elastic foundations - ScienceDirect
Coupled effects of magnetic field, number of walls, geometric imperfection, temperature change, and boundary conditions on nonlocal nonlinear vibration of carbon nanotubes resting on elastic foundations - ScienceDirect

Computation | Free Full-Text | A Physically Consistent Model for Forced  Torsional Vibrations of Automotive Driveshafts | HTML
Computation | Free Full-Text | A Physically Consistent Model for Forced Torsional Vibrations of Automotive Driveshafts | HTML

A nodal spacing study on the frequency convergence characteristics of  structural free vibration analysis by lumped mass Lagrangian finite  elements | Request PDF
A nodal spacing study on the frequency convergence characteristics of structural free vibration analysis by lumped mass Lagrangian finite elements | Request PDF

symmetry
symmetry

Efficiently Calculating Anharmonic Frequencies of Molecular Vibration by  Molecular Dynamics Trajectory Analysis | ACS Omega
Efficiently Calculating Anharmonic Frequencies of Molecular Vibration by Molecular Dynamics Trajectory Analysis | ACS Omega

PDF) True and Spurious Eigensolutions of an Elliptical Membrane by Using  the Nondimensional Dynamic Influence Function Method
PDF) True and Spurious Eigensolutions of an Elliptical Membrane by Using the Nondimensional Dynamic Influence Function Method

Recovering Heat Source from Fourth-Order Inverse Problems by Weighted  Gradient Collocation
Recovering Heat Source from Fourth-Order Inverse Problems by Weighted Gradient Collocation

Nanomaterials | Free Full-Text | Effects of Intense Laser Field on  Electronic and Optical Properties of Harmonic and Variable Degree  Anharmonic Oscillators | HTML
Nanomaterials | Free Full-Text | Effects of Intense Laser Field on Electronic and Optical Properties of Harmonic and Variable Degree Anharmonic Oscillators | HTML

2D and 3D Visualizations of the Mass-Damper-Spring Model Dynamics  Controlled by a Servo-Controlled Linear Actuator
2D and 3D Visualizations of the Mass-Damper-Spring Model Dynamics Controlled by a Servo-Controlled Linear Actuator

Quantum Reports | Free Full-Text | Displaced Harmonic Oscillator V ∼  min [(x + d)2, (x − d)2] as a Benchmark Double-Well Quantum Model |  HTML
Quantum Reports | Free Full-Text | Displaced Harmonic Oscillator V ∼ min [(x + d)2, (x − d)2] as a Benchmark Double-Well Quantum Model | HTML

Non-uniform meshes for the rectangular membrane problem using... | Download  Scientific Diagram
Non-uniform meshes for the rectangular membrane problem using... | Download Scientific Diagram

Nanomaterials | Free Full-Text | Effects of Intense Laser Field on  Electronic and Optical Properties of Harmonic and Variable Degree  Anharmonic Oscillators | HTML
Nanomaterials | Free Full-Text | Effects of Intense Laser Field on Electronic and Optical Properties of Harmonic and Variable Degree Anharmonic Oscillators | HTML

Convergence comparison of the first four frequencies for the... | Download  Scientific Diagram
Convergence comparison of the first four frequencies for the... | Download Scientific Diagram