Advanced Classical and Quantum Probability Theory with Quantum Field Theory Applications
portes grátis
Advanced Classical and Quantum Probability Theory with Quantum Field Theory Applications
Parthasarathy, Harish
Taylor & Francis Ltd
12/2022
248
Dura
Inglês
9781032405124
15 a 20 dias
Descrição não disponível.
1. Matrix Theory 2. Probability Theory 3. Antenna Theory 4. Miscellaneous Problems 5. More Problems in Linear Algebra and Functional Analysis 6. Models for the Refractive Index of Materials and Liquids 7. More Problems in Probability Theory, Antennas and Refractive Index of Materials
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Quantum Probability Theory;Stationary Stochastic Processes;Hilbert Space;Conditional Expectation;Energy Momentum Tensor;WSS Process;Root Space Decomposition;LTI System;Cumulative Distribution Function;Countably Additive;External Electromagnetic Field;Nonlinear Stochastic Difference Equation;Lie Algebra;Source Alphabet;Total Electromagnetic Field;Dirac Equation;Curved Space Time;Quantum Stochastic Differential Equations;Moving Point Objects;Radon Nikodym Theorem;Magnetic Dipole Moment;Dirac Wave Function;Electromagnetic Field;Stochastic Integral;Quantum Averaged
1. Matrix Theory 2. Probability Theory 3. Antenna Theory 4. Miscellaneous Problems 5. More Problems in Linear Algebra and Functional Analysis 6. Models for the Refractive Index of Materials and Liquids 7. More Problems in Probability Theory, Antennas and Refractive Index of Materials
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Quantum Probability Theory;Stationary Stochastic Processes;Hilbert Space;Conditional Expectation;Energy Momentum Tensor;WSS Process;Root Space Decomposition;LTI System;Cumulative Distribution Function;Countably Additive;External Electromagnetic Field;Nonlinear Stochastic Difference Equation;Lie Algebra;Source Alphabet;Total Electromagnetic Field;Dirac Equation;Curved Space Time;Quantum Stochastic Differential Equations;Moving Point Objects;Radon Nikodym Theorem;Magnetic Dipole Moment;Dirac Wave Function;Electromagnetic Field;Stochastic Integral;Quantum Averaged