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Electrical dimensions energy

Gaussian also predicts dipole moments and higher multipole moments (through hexadecapole). The dipole moment is the first derivative of the energy with respect to an applied electric field. It is a measure of the asymmetry in the molecular charge distribution, and is given as a vector in three dimensions. For Hartree-Fock calculations, this is equivalent to the expectation value of X, Y, and Z, which are the quantities reported in the output. [Pg.20]

A summary of the simulation results is shown in Table 16.1. In the first scenario, no surplus electricity is generated, because the grid is extended to cope with this amount of wind energy. In the fourth scenario, the surplus electricity increases to 17.3% of the wind generation. If the surplus electricity should be used in a storage system, it is necessary to dimension the storage option. If the storage option should... [Pg.489]

Power Capacity Electric Efficiency Thermal Energy Plant Dimensions Plant Weight... [Pg.31]

The basis for the present-day generation of ultrasound was established as far back as 1880 with the discovery of the piezoelectric effect by the Curies [1-3]. Most modern ultrasonic devices rely on transducers (energy converters) which are composed of piezoelectric material. Such materials respond to the application of an electrical potential across opposite faces with a small change in dimension. This is the inverse of the piezoelectric effect and will be dealt with in detail later (Chapter 7). If the potential is alternated at high frequencies the crystal converts the electrical energy to mechanical... [Pg.1]

Demirbas, A. 2002. Similarities and differences in electricity and light concepts convenient dimensions theory. Energy Edu Sci Technol 9 69-74. [Pg.238]


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See also in sourсe #XX -- [ Pg.5 ]




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ELECTRICAL ENERGY

Electrical dimensions

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