In this paper, using Einstein, Landau and Lifshitz's energy-momentum complexes both in general relativity and teleparallel gravity, we calculate the total energy distribution (due to matter and fields, including gravitation) associated with locally rotationally symmetric (LRS) Bianchi type II cosmological models. We show that energy densities in these different gravitation theories are the same, so they agree with each other. We obtain the result that the total energy is zero. This result agrees with previous works of Cooperstock and Israelit, Rosen, Johri et al., Banerjee and Sen, Vargas, Aydogdu and Salti. Moreover, our result supports the viewpoints of Albrow and Tryon
We calculate the energy of an anisotropic model of universe based on the Bianchi type I metric in th...
For certain models, the energy of the universe, which includes the energy of both matter and the gra...
In order to evaluate the energy distribution (due to matter and fields including gravitation) associ...
To calculate the total energy distribution (due to both matter and fields including gravitation) ass...
In this study, using the energy momentum definitions of Landau-Lifshitz, Papapetrou and Moller, we c...
In this study, using the energy momentum definitions of Einstein, Moller, Bergmann-Thomson, Landau-L...
We obtain the energy and momentum distributions of the universe in the Bianchi type V10 spacetime in...
We calculate the energy distribution of an anisotropic model of universe, based on the Bianchi type ...
In this study, using the energy momentum definitions of Einstein and Bergmann-Thomson, we compute th...
In order to evaluate the energy distribution (due to matter and fields including gravitation) associ...
Using the energy-momentum complexes of Tolman, Papapetrou and Weinberg, the total energy of the univ...
For certain models, the energy of the universe which includes the energy of both the matter and the ...
Using the Einstein and Bergmann-Thomson prescriptions, the energy and momentum distributions for the...
The energy distribution in the Locally Rotationally Symmetric (LRS) Bianchi type II space-time is ob...
Using the Einstein and Bergmann-Thomson prescriptions, the energy and momentum distributions for the...
We calculate the energy of an anisotropic model of universe based on the Bianchi type I metric in th...
For certain models, the energy of the universe, which includes the energy of both matter and the gra...
In order to evaluate the energy distribution (due to matter and fields including gravitation) associ...
To calculate the total energy distribution (due to both matter and fields including gravitation) ass...
In this study, using the energy momentum definitions of Landau-Lifshitz, Papapetrou and Moller, we c...
In this study, using the energy momentum definitions of Einstein, Moller, Bergmann-Thomson, Landau-L...
We obtain the energy and momentum distributions of the universe in the Bianchi type V10 spacetime in...
We calculate the energy distribution of an anisotropic model of universe, based on the Bianchi type ...
In this study, using the energy momentum definitions of Einstein and Bergmann-Thomson, we compute th...
In order to evaluate the energy distribution (due to matter and fields including gravitation) associ...
Using the energy-momentum complexes of Tolman, Papapetrou and Weinberg, the total energy of the univ...
For certain models, the energy of the universe which includes the energy of both the matter and the ...
Using the Einstein and Bergmann-Thomson prescriptions, the energy and momentum distributions for the...
The energy distribution in the Locally Rotationally Symmetric (LRS) Bianchi type II space-time is ob...
Using the Einstein and Bergmann-Thomson prescriptions, the energy and momentum distributions for the...
We calculate the energy of an anisotropic model of universe based on the Bianchi type I metric in th...
For certain models, the energy of the universe, which includes the energy of both matter and the gra...
In order to evaluate the energy distribution (due to matter and fields including gravitation) associ...