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Nonlinear Term
46%
Urban Railway
46%
High-speed Railway
46%
Building Capability
46%
Moving Load
34%
Solution Method
34%
Adomian Modified Decomposition Method
34%
Higher Harmonics
23%
Critical Velocity
23%
Governing Equations
23%
Euler-Bernoulli Nanobeam
23%
Accurate Results
23%
Beam on Elastic Foundation
23%
Axially Loaded Beam
23%
Free Vibration
23%
Large Amplitude
23%
Euler-Bernoulli Beam
17%
Analytical Solution
17%
Dynamic Response
11%
Timoshenko Beam
11%
Calculation Method
11%
Rotary Inertia
11%
Fourth Order
11%
Homotopy Perturbation Method
11%
Beam-beam
11%
Free Waves
11%
Interaction Model
11%
Light Rail Transit
11%
Damped Vibration
11%
Linear Movement
11%
Support Structure
11%
Natural Vibration
11%
Highly Nonlinear
11%
Track Design
11%
Design Optimization
11%
Turning Movement
11%
Foundation Interaction
11%
Hardening Characteristics
11%
Railway Engineering
11%
Slat
11%
Noise Generation
11%
Equivalent Linear Model
11%
Nonlinear Equations
11%
Nonlinear Effects
11%
Comparing Methods
11%
Foundation Models
11%
Fourth-order Equation
11%
Fourier Transformation
11%
Forced Vibration
11%
Time Response
11%
Static Response
11%
Comparing Models
11%
Nonlinear Characteristics
11%
Phase Velocity
11%
Nonlinear Beam Model
11%
Main Phase
11%
Elastic Foundation
11%
Viscoelastic Foundation
11%
Green's Function
11%
Response History
11%
Foundation Type
11%
Railway Track
11%
Dynamic Response Analysis
11%
Homogeneous and Non-homogeneous
11%
Static Response Analysis
11%
Nonlinear Viscoelastic Foundation
11%
Rail Pad
11%
Moving Harmonic Load
11%
Nonlinear Viscoelastic Model
11%
Integral Form
11%
Solution Model
11%
Three-dimensional (3D)
11%
Java Language
11%
Turning Radius
11%
Nonhomogeneous Equation
11%
Load Frequency
11%
Mathematical Model
11%
Analytical Method
11%
Wave Propagation
11%
Railway Engineer
11%
Higher-order Terms
11%
Rethink
11%
Proposed Work
11%
Mode Shape
11%
Loading Speed
11%
Professional Users
11%
Adomain Polynomials
11%
High-speed Rail Transport
11%
User-friendly Environment
11%
Solutions of Equation
11%
Natural Frequency
11%
Modal Frequency/shape
11%
Flap Displacement
11%
Internal Friction/damping
11%
Beam Properties
11%
Foundation Property
11%
Algebraic Equation
5%
Faculty Development
5%
Grant Program
5%
Natural Modes
5%
Axial Loading
5%
Free Transverse Vibration
5%
Mathematical Operations
5%
Integral Coefficient
5%
Fredholm Integral
5%
Eigenvector Problems
5%
Axially Loaded
5%
Series Solution
5%
One-parameter
5%
INIS
beams
100%
foundations
93%
nonlinear problems
74%
equations
55%
dynamics
53%
decomposition
49%
railways
49%
speed
46%
design
46%
solutions
28%
amplitudes
26%
shape
26%
shear
26%
damping
23%
helicopters
23%
equations of motion
23%
rotors
23%
torsion
23%
investigations
20%
inertia
15%
harmonics
13%
boundary conditions
11%
differential equations
11%
curves
11%
convergence
11%
slabs
10%
fourier transformation
10%
analytical solution
9%
loading
9%
perturbations
7%
critical velocity
7%
applications
7%
simulation
7%
tracks
7%
environment
7%
comparative evaluations
6%
velocity
6%
eigenvectors
5%
increasing
5%
operation
5%
Engineering
Moving Load
59%
Railway
57%
Nonlinear Term
48%
Dynamic Response
41%
Harmonics
39%
Blade Flap
23%
Rotor Blade
23%
Helicopter
23%
Rotary Inertia
20%
Bernoulli Beam
20%
Fourier Transform
20%
Fourth Order
18%
Static Response
18%
Solution Method
18%
Hamilton's Principle
11%
Algebraic Equation
11%
Axial Tension
11%
Helicopter Blade
11%
Coupled Equation
11%
Centrifugal Stiffening
11%
Flaps
11%
Energy Dissipation
11%
Deflected Shape
11%
Safety Aspect
11%
Radius of Gyration
11%
Beam Deflection
11%
Shear Rigidity
11%
Fast Fourier Transform
11%
Internal Friction
11%
Pavement
11%
Critical Wavelength
11%
Ordinary differential equations
11%
Spatial Distribution
11%
Light Rail Transit
9%
Response Time
9%
Equivalent Linear Model
9%
Beam Model
9%
Linear Viscoelastic Model
9%
Non-Linear Effect
9%
Phase Velocity
9%
Integral Form
9%
Rail Pad
9%
Closed Form Solution
9%
Load Speed
9%
Homogeneous Equation
9%
Damped Vibration
9%
Design Optimization
9%
Frequency Domain
9%
Engineering
9%
Mathematical Modeling
9%
Turning Radius
9%
Nonlinear Equation
9%
Green's Functions
9%
Graphical User Interface
9%
Mathematical Model
9%
Forced Vibration
9%
Diffraction
9%