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Equipartition of energy in a helix
Yaswanth Sai Jetti
,
Martin Ostoja-Starzewski
Mechanical Science and Engineering
National Center for Supercomputing Applications (NCSA)
Beckman Institute for Advanced Science and Technology
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Keyphrases
Helix
100%
Energy Equipartition
100%
Kinetic Energy
66%
Potential Energy
66%
Constitutive Relation
33%
Electrodynamics
33%
Elastodynamics
33%
Physical Context
33%
Micropolar Elasticity
33%
Longitudinal Wave
33%
Direct Coupling
33%
Torsional Wave
33%
Wave Motion
33%
Equipartition
33%
Compact Support
33%
Linear Wave Equation
33%
Condition Function
33%
Physics
Potential Energy
100%
Kinetic Energy
50%
Wave Equation
50%
Elastodynamics
50%
Linear Wave
50%
Electrodynamics
50%
Engineering
Finite Time
100%
Potential Energy
66%
Constitutive Relation
33%
Initial Condition
33%
Compact Support
33%
Wave Motion
33%
Chemistry
Potential Energy
100%
Kinetic Energy
50%
Wave Equation
50%
Electrodynamics
50%
Mathematics
Finite Time
100%
Wave Equation
33%
Compact Support
33%
Constitutive Relation
33%
Initial Condition Function
33%