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== Relativistic Physics == == Relativistic Physics == Relativistic physics, also known as relativistic mechanics, is a branch of physics that refers to [[Albert Einstein|Albert Einstein's]] [[Special relativity|special]] and [[General relativity|general]] theories of relativity. Relativistic physics seeks to describe the fundamental behavior and interactions of objects in a [[Quantum mechanics|non-quantum]] way. A [[Physical system|system]] traveling at the [[Speed of light|speed of light ''c'']] whose behavior and interactions are measured correctly to observation is considered a relativistic system, as opposed to [[Classical mechanics|classical physics]] whose measurements of objects and systems are only valid well-below the speed of light, and quantum mechanics whose measurements are only valid well-above a molecular scale. Since the speed of light is incorporated into relativistic physics in a way classical or quantum mechanics could never, relativistic physics provides a consistent explanation for [[electromagnetism]]. See the [[Maxwell's equations|Maxwell-Heaviside equations]] and the [[Proca action|Proca equation]] for an in-depth relativistic description to electromagnetism. Blah blah blah what am I even saying? No one gonna read this lol. Relativistic physics, also known as relativistic mechanics, is a branch of physics that refers to [[Albert Einstein|Albert Einstein's]] [[Special relativity|special]] and [[General relativity|general]] theories of relativity. Relativistic physics seeks to describe the fundamental behavior and interactions of objects in a [[Quantum mechanics|non-quantum]] way that's compatible with the [[Speed of light|Universe's speed limit]]. A [[Physical system|system]] traveling at the [[Speed of light|speed of light ''c'']] whose behavior and interactions are measured correctly to observation is considered a relativistic system, as opposed to [[Classical mechanics|classical physics]] whose measurements of objects and systems are only valid well-below the speed of light, and quantum mechanics whose measurements are only valid well-above a molecular scale. Since the speed of light is incorporated into relativistic physics in a way classical or quantum mechanics could never, relativistic physics provides a consistent explanation for [[electromagnetism]]. See the [[Maxwell's equations|Maxwell-Heaviside equations]] and the [[Proca action|Proca equation]] for an in-depth relativistic description to electromagnetism. Blah blah blah what am I even saying? No one gonna read this lol.
== Notable Works == == Notable Works ==
== Relativistic Physics == == Relativistic Physics == Relativistic physics, also known as relativistic mechanics, is a branch of physics that refers to [[Albert Einstein|Albert Einstein's]] [[Special relativity|special]] and [[General relativity|general]] theories of relativity. Relativistic physics seeks to describe the fundamental behavior and interactions of objects in a [[Quantum mechanics|non-quantum]] way. A [[Physical system|system]] traveling at the [[Speed of light|speed of light ''c'']] whose behavior and interactions are measured correctly to observation is considered a relativistic system, as opposed to [[Classical mechanics|classical physics]] whose measurements of objects and systems are only valid well-below the speed of light, and quantum mechanics whose measurements are only valid well-above a molecular scale. Since the speed of light is incorporated into relativistic physics in a way classical or quantum mechanics could never, relativistic physics provides a consistent explanation for [[electromagnetism]]. See the [[Maxwell's equations|Maxwell-Heaviside equations]] and the [[Proca action|Proca equation]] for an in-depth relativistic description to electromagnetism. Blah blah blah what am I even saying? No one gonna read this lol. Relativistic physics, also known as relativistic mechanics, is a branch of physics that refers to [[Albert Einstein|Albert Einstein's]] [[Special relativity|special]] and [[General relativity|general]] theories of relativity. Relativistic physics seeks to describe the fundamental behavior and interactions of objects in a [[Quantum mechanics|non-quantum]] way that's compatible with the [[Speed of light|Universe's speed limit]]. A [[Physical system|system]] traveling at the [[Speed of light|speed of light ''c'']] whose behavior and interactions are measured correctly to observation is considered a relativistic system, as opposed to [[Classical mechanics|classical physics]] whose measurements of objects and systems are only valid well-below the speed of light, and quantum mechanics whose measurements are only valid well-above a molecular scale. Since the speed of light is incorporated into relativistic physics in a way classical or quantum mechanics could never, relativistic physics provides a consistent explanation for [[electromagnetism]]. See the [[Maxwell's equations|Maxwell-Heaviside equations]] and the [[Proca action|Proca equation]] for an in-depth relativistic description to electromagnetism. Blah blah blah what am I even saying? No one gonna read this lol.
== Notable Works == == Notable Works ==