Encyclopedia of Physical Science and Technology, Volume 4Academic Press, 1987 - Engineering |
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Page 285
... linear nonhomoge- neous system of ordinary differential equations . = [ a ] is a 6. If in ( I ) , f ( t , x ) = Ax , where A real n n matrix with constant coefficients , then we have x ' = Ax ( L ) This type of system is called a linear ...
... linear nonhomoge- neous system of ordinary differential equations . = [ a ] is a 6. If in ( I ) , f ( t , x ) = Ax , where A real n n matrix with constant coefficients , then we have x ' = Ax ( L ) This type of system is called a linear ...
Page 293
... linear systems of ordinary differ- ential equations with periodic coefficients . We also address some of the properties of nth - order linear ordinary differential equations . A. LINEAR HOMOGENEOUS AND NONHOMOGENEOUS SYSTEMS We first ...
... linear systems of ordinary differ- ential equations with periodic coefficients . We also address some of the properties of nth - order linear ordinary differential equations . A. LINEAR HOMOGENEOUS AND NONHOMOGENEOUS SYSTEMS We first ...
Page 295
... linear systems of differential equations . We call 6 , the particular solution and the homogeneous solu- tion of ( LN ) . Before proceeding to linear systems with con- stant coefficients , we introduce adjoint equa- tions . Let be a ...
... linear systems of differential equations . We call 6 , the particular solution and the homogeneous solu- tion of ( LN ) . Before proceeding to linear systems with con- stant coefficients , we introduce adjoint equa- tions . Let be a ...
Contents
Executive Advisory Board ii Dosimetry | 386 |
Editorial Advisory Board V J W Poston | 438 |
Crystal Growth 1 Automata | 464 |
Copyright | |
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aircraft algorithm allenes alpha particles angle anode antenna applied atoms Banach space baryons battery cable cathode cell characteristics circuit components conductor constant converter defined density detector distribution dose dosimeter dosimetry effects elec electric electrolyte electron energy equation equilibrium ergy example exposure factor Fermi Fermi surface field flow frequency function g/cm³ given heat HVDC ICRP increase induction interaction ionization ions iteration kinetic lattice linear machine magnetic mantle mass matrix measured ment metal method missiles motor Nernst equation neutrino neutron neutron matter nuclear operation optical fibers optimal ordinary differential equations overpotential parameters particles phase photon potential problem propulsion radiation radionuclide range ratio reaction result rotor scattering shown in Fig signal solution space speed structure surface techniques temperature thermal thyristor tion torque transmission transmitted trons unit valve vector velocity voltage wave