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thermoelastic Meaning in Bengali



Noun:

তাপপ্রয়োগে নমনীয় করা পদার্থ,





thermoelastic's Usage Examples:

Thermoelastic damping is a source of intrinsic material damping due to thermoelasticity present in almost all materials.


As the name thermoelastic suggests.


The cause is thought to be thermoelastic expansion of portions of the auditory apparatus, although competing.


"working solids", such as rubber bands, for elastocaloric refrigeration or thermoelastic cooling and nickel titanium in a prototype heat engine.


studies of anelasticity in metals and prediction and observation of thermoelastic damping.


energy will be absorbed and converted into heat, leading to transient thermoelastic expansion and thus wideband (i.


beam welding, diffusion in polymers, solidification thermomechanics, thermoelastic stability and shock dynamics.


stress concentration factors including photoelastic stress analysis, thermoelastic stress analysis, brittle coatings or strain gauges.


principle is of thermal expansion (also called thermoelastic regime) or ablation.


In the thermoelastic regime, the ultrasound is generated by the sudden.


Using a nanosecond pulsed laser beam, tissues undergo thermoelastic expansion, resulting in the release of a wide-band acoustic wave that.


DARPA-Aerospace sponsored PicoSat launcher assembly Shape memory alloy thermoelastic tailoring experiment Starfire optical reflectors for use with Kirtland's.


Heat transfer (steady state and transient) Structural mechanics and thermoelasticity Acoustics (harmonic and transient) Incompressible flow (steady state.


and Analysis 40 (1971), 1–36 ("The coldness, a universal function in thermoelastic bodies", Archive for Rational Mechanics and Analysis 41:5, 319-332).


William Thomson (1878) "On the thermoelastic, thermomagnetic and pyroelectric properties of matter," Philosophical.


fractions International Journal of Solids and Structures 1993 Axisymmetric thermoelastic response of a composite cylinder containing an annular matrix crack.


the Earth's deep upper mantle—implications from the single-crystal thermoelastic properties of jadeite".


generated by zero-point fluctuations of the vacuum (1991), and fundamental thermoelastic and thermorefractive fluctuations (1999, 2000), and parametric instabilities.


to work at the École de Chimie, University of Geneva, studying the thermoelastic properties of living muscle and long-chain polymers using X-ray crystallography.


multiple scales to an applied force for the purpose of modeling their thermoelastic and thermodynamic properties.


groups (causing protein aggregation), or by damaging lens cells via thermoelastic expansion.



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