Theoretical models of thermoluminescence and their relevance in experimental domain (1998)
- Authors:
- USP affiliated authors: SUNTA, CHINTAMANI - IF ; WATANABE, SHIGUEO - IF
- Unidade: IF
- Assunto: FÍSICA NUCLEAR
- Language: Inglês
- Imprenta:
- Publisher: Editorial Ciemat
- Publisher place: Madrid
- Date published: 1998
- Conference titles: International Conference on Solid State Dosimetry
-
ABNT
SUNTA, C M et al. Theoretical models of thermoluminescence and their relevance in experimental domain. 1998, Anais.. Madrid: Editorial Ciemat, 1998. . Acesso em: 21 maio 2024. -
APA
Sunta, C. M., Feria Ayta, W. E., Kulkarni, R. N., & Watanabe, S. (1998). Theoretical models of thermoluminescence and their relevance in experimental domain. In . Madrid: Editorial Ciemat. -
NLM
Sunta CM, Feria Ayta WE, Kulkarni RN, Watanabe S. Theoretical models of thermoluminescence and their relevance in experimental domain. 1998 ;[citado 2024 maio 21 ] -
Vancouver
Sunta CM, Feria Ayta WE, Kulkarni RN, Watanabe S. Theoretical models of thermoluminescence and their relevance in experimental domain. 1998 ;[citado 2024 maio 21 ] - Thermally stimulated luminescence and conductivity - theoretical models and their applicability to experimental results
- Importance of quasi-equilibrium in thermally stimulated luminescence and conductivity
- Quasi-equilibrium assumption in analytical models of thermoluminescence ant its validity
- Variation of general order kinetics parameters of thermoluminescence during glow curve readout
- Interactive trap system model and the behavior of thermoluminescence glow peaks
- General order kinetics of thermoluminescente-a comparison with physical models
- Thermally stimulated luminescence and conductivity - a critical review of the theoretical treatments and their applicability to experimental results
- A simple method for thermoluminescence glow curve analysis based on the general orden kinetics
- Pre-exponential factor in general order kinetics of thermoluminescence and its influence on glow curves
- Função de quase-equilíbrio na condutividade e luminescência estimulada termicamente
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