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Time-domain methods for diffusive transport in soft matter
John Fricks
, Lingxing Yao
, Timothy C. Elston
, M. Gregory Forest
Research output
:
Contribution to journal
›
Article
›
peer-review
56
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Keyphrases
Brownian Particle
25%
Diffusion Properties
25%
Diffusive Transport
100%
Direct Modeling
25%
Discrete Formulation
25%
Displacement Statistic
25%
Drag Law
25%
Experimental Protocol
25%
Exponential Kernel
25%
Exponential Series
25%
Frequency Space
25%
Frequency-dependent Loss
25%
Generalized Langevin Equation
100%
Inverse Problem
25%
Kalman Filter
25%
Loss Modulus
25%
M-mode
25%
Maximum Likelihood Estimator
25%
Mean Square Displacement
25%
Memory Kernel
25%
Microbeads
25%
Micron-scale
25%
Ornstein-Uhlenbeck Process
25%
Particle Paths
25%
Particle Tracking
25%
Passive Microrheology
25%
Path Correlation
25%
Position Data
25%
Series Analysis
25%
Soft Matter
100%
Statistical Correlation
25%
Stochastic Processes
25%
Storage Modulus
25%
Time-domain Method
100%
Viscoelastic Medium
25%
Viscoelastic Modulus
25%
Physics
Langevin Equation
100%
Microrheology
25%
Soft Matter Physics
100%
Statistical Correlation
25%
Stochastic Process
25%
Time Domain Processing
100%
Time Series Analysis
25%
Transportation
100%
Mathematics
Brownian Particle
25%
Experimental Data
25%
Kalman Filtering
25%
Langevin Equation
100%
Maximum Likelihood Estimator
25%
Ornstein Uhlenbeck Process
25%
Single Mode
25%
Stochastic Process
25%
Time Domain
100%
Time Series Analysis
25%