Maxwell's equations of electrodynamics an explanation
Maxwell's Equations of Electrodynamics: An Explanation is a concise discussion of Maxwell's four equations of electrodynamics-the fundamental theory of electricity, magnetism, and light. It guides readers step-by-step through the vector calculus and development of each equation. The book not only provides a fundamental description of our universe but also explains how these equations predict the fact that light is better described as ""electromagnetic radiation.""
"Maxwell's Equations of Electrodynamics: An Explanation is a concise discussion of Maxwell's four equations of electrodynamics-the fundamental theory of electricity, magnetism, and light. It guides readers step-by-step through the vector calculus and development of each equation. The book not only provides a fundamental description of our universe but also explains how these equations predict the fact that light is better described as ""electromagnetic radiation."""@en
"Maxwell's Equations of Electrodynamics: An Explanation is a concise yet complete discussion of Maxwell's four equations of electrodynamics-the fundamental theory of electricity, magnetism, and light. Written for a general audience, it guides readers step-by-step through the vector calculus (yikes!) and development of each equation. Pictures and diagrams illustrate what the equations mean in basic terms. The book not only provides a fundamental description of our universe but also explains how these equations predict the fact that light is better described as "electromagnetic radiation.""
"Maxwell's Equations of Electrodynamics: An Explanation is a concise yet complete discussion of Maxwell's four equations of electrodynamics-the fundamental theory of electricity, magnetism, and light. Written for a general audience, it guides readers step-by-step through the vector calculus (yikes!) and development of each equation. Pictures and diagrams illustrate what the equations mean in basic terms. The book not only provides a fundamental description of our universe but also explains how these equations predict the fact that light is better described as "electromagnetic radiation.""@en
Society of Photo-optical Instrumentation Engineers.
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