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Outcome of Hall Current and Mechanical Load on a Fiber-Reinforced Thermoelastic Medium per the Hypothesis of One Thermal Relaxation Time
by
Abo-Dahab, Sayed M.
, Jaradat, Emad K.
, Gafel, Hanan S.
, Said, Samia M.
in
Boundary conditions
/ Fiber reinforced materials
/ Fiber reinforcement
/ Gravitational fields
/ Gravity
/ gravity field
/ Heat
/ Hypotheses
/ Lord–Schulman hypothesis
/ Magnetic fields
/ normal mode analysis
/ Partial differential equations
/ Relaxation time
/ strong magnetic field
/ Thermal relaxation
/ Wave propagation
2025
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Outcome of Hall Current and Mechanical Load on a Fiber-Reinforced Thermoelastic Medium per the Hypothesis of One Thermal Relaxation Time
by
Abo-Dahab, Sayed M.
, Jaradat, Emad K.
, Gafel, Hanan S.
, Said, Samia M.
in
Boundary conditions
/ Fiber reinforced materials
/ Fiber reinforcement
/ Gravitational fields
/ Gravity
/ gravity field
/ Heat
/ Hypotheses
/ Lord–Schulman hypothesis
/ Magnetic fields
/ normal mode analysis
/ Partial differential equations
/ Relaxation time
/ strong magnetic field
/ Thermal relaxation
/ Wave propagation
2025
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Outcome of Hall Current and Mechanical Load on a Fiber-Reinforced Thermoelastic Medium per the Hypothesis of One Thermal Relaxation Time
by
Abo-Dahab, Sayed M.
, Jaradat, Emad K.
, Gafel, Hanan S.
, Said, Samia M.
in
Boundary conditions
/ Fiber reinforced materials
/ Fiber reinforcement
/ Gravitational fields
/ Gravity
/ gravity field
/ Heat
/ Hypotheses
/ Lord–Schulman hypothesis
/ Magnetic fields
/ normal mode analysis
/ Partial differential equations
/ Relaxation time
/ strong magnetic field
/ Thermal relaxation
/ Wave propagation
2025
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Outcome of Hall Current and Mechanical Load on a Fiber-Reinforced Thermoelastic Medium per the Hypothesis of One Thermal Relaxation Time
Journal Article
Outcome of Hall Current and Mechanical Load on a Fiber-Reinforced Thermoelastic Medium per the Hypothesis of One Thermal Relaxation Time
2025
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Overview
The current study shows the propagation of waves in a fiber-reinforced thermoelastic medium with an inclined load under the effect of Hall current and gravitational force. The problem is analyzed using the Lord–Schulman hypothesis of one thermal relaxation time. A normal mode method is utilized to acquire the analytical result for any boundary condition. Several investigations have been adapted into figures to display the impacts of the gravity field, Hall current, inclined load, and the empirical solid constant on all physical quantities. A comparison is made with the obtained results to indicate the strong impact of the external parameters acting on the phenomenon of mechanical load on the fiber-reinforcement thermoelastic medium.
Publisher
MDPI AG
Subject
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