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Abstrakty
In this paper, the fundamental solution of system of differential equations in the theory of elasto-thermodiffusive(ETNP) semiconductor materials in case of steady oscillations in terms of elementary functions is constructed. Some basic properties of the fundamental solution are also established.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
371--384
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
autor
- Department of Mathematics Kurukshetra University Kurukshetra-136119, India
autor
- Department of Mathematics M.N. College Shahabad(M.)-136135, India
Bibliografia
- 1. H.W. Lord, Y. Shulman, A generalized dynamical theory of thermoelasticity, Journal of Mechanics and Physics of Solids, 15, 299–309, 1967.
- 2. A.E. Green, K.A. Lindsay, Thermoelasticity, Journal of Elasticity, 2, 1–7, 1972.
- 3. R.S. Dhaliwal, H.H. Sherief, Generalized thermoelasticity for anisotropic media, Quarterly of Applied Mathematics, 38, 1–8, 1980.
- 4. D.S. Chandrasekhariah, Thermoelasticity with second sound: a review, Applied Mechanics Review, 39, 355–376, 1986.
- 5. R.B. Hetnarski, J. Ignaczak, Generalized thermoelasticity, Journal of Thermal Stresses, 22, 451–476, 1999.
- 6. B. Maruszewski, Electro-magneto-thermo-elasticity of extrinsic semiconductors: classical irreversible thermodynamic approach, Arch. Mech., 38, 71–82, 1986.
- 7. B. Maruszewski, Electro-magneto-thermo-elasticity of extrinsic semiconductors. Extended irreversible thermodynamic approach, Arch. Mech., 38, 83–95, 1986.
- 8. B. Maruszewski, Coupled evolution equations of deformable semiconductors, International Journal of Engineering Science, 25, 145–153, 1987.
- 9. B. Maruszewski, Heat and charge carrier relaxation in deformable semiconductors, [in:] Y. Yamamoto, K. Miya [Eds.], Electro-magneto-mechanical Interactions in Deformable Solids and Structures, North-Holland, Amsterdam, 395–400, 1987.
- 10. B. Maruszewski, Thermodiffusive surface waves in semiconductors, J. Acoust. Soc. Am., 85, 1967–1977, 1989.
- 11. A. Many, J. Goldstein, N.B. Grover, Semiconductor Surfaces, North-Holland, Amsterdam, 1965.
- 12. J.N. Sharma, N. Thakur, Plane harmonic elasto-thermodiffusive waves in semiconductor materials, J. Mech. Mater. Struct., 1, 813–835, 2006.
- 13. R.B. Hetnarski, The fundamental solution of the coupled thermoelastic problem for small times, Arch. Mech. Stosow., 16, 23–31, 1964.
- 14. R.B. Hetnarski, Solution of the coupled problem of thermoelasticity in form of a series of functions, Arch. Mech. Stosow., 16, 919–941, 1964.
- 15. D. Iesan, On the theory of thermoelasticity without energy dissipation, Journal of Thermal Stresses, 21, 295–307, 1998.
- 16. M. Svanadze, The fundamental matrix of the linearlized equations of the theory of elastic mixtures, Proc. I. Vekua Inst. Appl. Math., Tbilisi State Univ, 23, 133–148, 1988.
- 17. M. Svanadze, The fundamental solution of the oscillation equations of thermoelasticity theory of mixtures of two solids, Journal of Thermal Stresses, 19, 633–648, 1996.
- 18. M. Svanadze, Fundamental solutions of the equations of the theory of thermoelasticity with microtemperatures, Journal of Thermal Stresses, 27, 151–170, 2004.
- 19. M. Svanadze, Fundamental solution of the system of equations of steady oscillations in the theory of microstrecth elastic solids, International Journal of Engineering Science, 42, 1897–1910, 2004.
- 20. L. Hörmander, Linear Partial Differential Operators, Springer, Berlin, 1963.
- 21. L. Hörmander, The Analysis of Linear Partial Differential Operators II: Differential Operators with Constant Coefficients, Springer, Berlin, 1983.
- 22. V.D. Kupradze, T.G. Gegelia, M.O. Basheleishvili, T.V. Burchuladze, Three-Dimensional Problems of the Mathematical Theory of Elasticity and Thermoelasticity, North-Holland Pub. Company, Amsterdam, New York, Oxford, 1979.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-653201d4-9f43-4fed-9db6-e7ded8e3a19c