Earth and Planetary Sciences
Sorption
100%
Implication
100%
Observation
100%
Permeability
100%
Gas
100%
Strain
100%
Gradient
100%
Fracture
27%
Confining Pressure
11%
Model
11%
Condition
11%
Swelling
11%
Scanning Electron Microscopy
5%
Microstructure
5%
Deformation
5%
Depletion
5%
Numerical Model
5%
X Ray
5%
Tomography
5%
Desorption
5%
Dissipation
5%
Gas Injection
5%
Capillary Pressure
5%
Field Emission
5%
Gas Adsorption
5%
Time
5%
Array
5%
Sample
5%
Laboratory
5%
Response
5%
Difference
5%
Contrast
5%
Strain Gage
5%
Numerical Modeling
5%
Mercury
5%
Injection
5%
Physics
Sorption
100%
Gases
100%
Gradients
100%
Strain
100%
Matrix
44%
Pressure
27%
Fracture
27%
Desorption
11%
Model
11%
Injection
11%
Swelling
11%
Deformation
5%
Numerical Model
5%
Microstructure
5%
Tomography
5%
X Ray
5%
Scanning Electron Microscopy
5%
Dissipation
5%
Adsorption
5%
Field Emission
5%
Contrast
5%
Arrays
5%
Differences
5%
Responses
5%
Measuring Instruments
5%
Transients
5%
Engineering
Experimental Observation
100%
Strain Gradient
100%
Fracture
22%
Confining Pressure
11%
Models
11%
Adsorption
11%
Mercury
11%
Swelling
11%
Measurement
5%
Numerical Model
5%
Microstructure
5%
Laboratories
5%
Depletion
5%
Fracture Permeability
5%
Equilibration
5%
Gas Injection
5%
Pressure Difference
5%
Nonuniform Deformation
5%
Field-Emission Scanning Electron Microscopy
5%
Measurer
5%
Transients
5%
Numerical Modeling
5%
Strain Gage
5%
Material Science
Shale
100%
Permeability
100%
Gas
100%
Swelling
11%
Tomography
5%
Field Emission Scanning Electron Microscopy
5%
Porosimetry
5%
Shrinkage
5%
Microstructure
5%