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I. Rao
Professor
,
Mechanical and Industrial Engr
Email
RAOI
njit
edu
h-index
1303
Citations
19
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
1999
2021
Research activity per year
Overview
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Network
Federal Grants
(1)
Research output
(43)
Press/Media
(1)
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Dive into the research topics where I. Rao is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Weight
Alphabetically
Engineering
Natural Configuration
100%
Crystalline Phase
64%
Original Shape
54%
Thermodynamic Framework
42%
Boundary Value
37%
Covalent
36%
Continuum Model
36%
Inhomogeneous Deformation
32%
Constitutive Modeling
32%
Crosslinks
30%
Constitutive Model
29%
External Stimulus
20%
Anisotropic
20%
Blowing Process
20%
Film Blowing
20%
Elastic Solid
19%
Polymer Chain
18%
Constitutive Equation
18%
Injection Molded Part
18%
Creep
18%
Energy Engineering
15%
Memory Effect
15%
Biomedical Device
15%
Experimental Observation
14%
Homogeneous Deformation
14%
Experimental Result
13%
Dissipative Process
12%
Mass Production
12%
Shape Change
12%
Stored Energy
10%
Maxwell Model
10%
Model Type
9%
Axial Extension
9%
Network Polymer
9%
Temporary Deformed Shape
9%
Constitutive Relation
9%
Microstructural Feature
9%
Mechanical Environment
9%
Finite Element Method
8%
Mathematical Model
8%
Internal Energy
8%
Boundary Condition
8%
Strain Condition
8%
Stress Condition
8%
Power Generation
8%
External Stress
8%
Crystallinity
8%
Fluid Model
7%
Mechanical Response
7%
Semicrystalline Polymer
7%
Keyphrases
Crystallization
77%
Shape Memory Polymer
64%
Light Activated Shape Memory Polymer
44%
Crystalline Phase
43%
Temporary Shape
42%
Multiple Natural Configurations
39%
Thermodynamic Framework
36%
Continuum Model
33%
Constitutive Modeling
32%
Inhomogeneous Deformation
27%
Elastic Solid
22%
Natural Modes
22%
Polymer Melt
21%
Triple-shape Memory Polymer
20%
Film Blowing Process
20%
Light Exposure
19%
Injection-molded Parts
18%
Dissipation Rate
17%
Boundary Value Problem
16%
Anisotropy
14%
Constitutive Model
14%
Viscoelastic Fluid
13%
Constitutive Equation
12%
Crystalline Solids
12%
Crystallization Kinetics
12%
Creep
12%
Johnson-Segalman Fluid
12%
K-BKZ Model
12%
Single Crystal Nickel-based Superalloy
12%
Plastic Injection
12%
Color pigments
12%
Pigment Concentration
12%
Concentration Level
12%
Film Blowing
12%
Stored Energy
10%
Smart Materials
10%
Entropy Production
10%
Thermodynamics
10%
Semi-crystalline
10%
Crystallization Process
9%
Radiation Sterilization
9%
Shape Memory Effect
9%
Anisotropic Elasticity
9%
External Stimuli
9%
Strain-induced Crystallization
9%
Soft Tissue
9%
Thermally Activated Processes
8%
Photosensitive Molecules
8%
Specific Wavelength
8%
Maxwell Model
8%
Material Science
Shape Memory Polymer
98%
Crystalline Material
50%
Film
26%
Constitutive Modeling
25%
Polymer Melt
19%
Creep
18%
Anisotropy
16%
Amorphous Material
14%
Nickel-Based Superalloys
12%
Solidification
12%
Single Crystal
12%
Mechanical Property
10%
Crystal
10%
Crystallization
9%
Shape Memory Effect
9%
Polymer Processing
8%
Intelligent Material
8%
Fiber Spinning
8%
Polypropylene
7%
Glass Transition
7%
Polymer
7%
Shape Memory
6%
Shear Flow
6%
Acrylonitrile Butadiene Styrene
6%
Gene Expression
6%
Polymer Network
6%
Viscoelastic Behavior
6%
Strain Rate
6%
Ultimate Tensile Strength
6%
Crystallite
6%
Covalent Bond
5%