| − | '''Maxwell's Equations''', formulated around 1861 by [[James Maxwell|James Clerk Maxwell]] describe the interrelation between electric and magnetic fields.<ref>Wile, Dr. Jay L. ''Exploring Creation With Physical Science''. Apologia Educational Ministries, Inc. 1999, 2000</ref>They were a synthesis of what was known about electricity and magnetism, particularly building on the work of [[Michael Faraday]], [[C. A. Coulomb|Charles-Augustin Coulomb]], [[Andre-Marie Ampere]], and others. These equations predicted the existence of [[Electromagnetic wave]]s, giving them properties that were recognized to be properties of light, leading to the (correct) realization that light is an electromagnetic wave. Other forms of electromagnetic waves, such as radio waves, were not known at the time, but were subsequently demonstrated by [[Heinrich Hertz]] in 1888. These equations are considered to be among the most elegant edifices of mathematical physics. | + | '''Maxwell's Equations''', formulated around 1861 by [[James Clerk Maxwell]] describe the interrelation between electric and magnetic fields.<ref>Wile, Dr. Jay L. ''Exploring Creation With Physical Science''. Apologia Educational Ministries, Inc. 1999, 2000</ref>They were a synthesis of what was known about electricity and magnetism, particularly building on the work of [[Michael Faraday]], [[C. A. Coulomb|Charles-Augustin Coulomb]], [[Andre-Marie Ampere]], and others. These equations predicted the existence of [[Electromagnetic wave]]s, giving them properties that were recognized to be properties of light, leading to the (correct) realization that light is an electromagnetic wave. Other forms of electromagnetic waves, such as radio waves, were not known at the time, but were subsequently demonstrated by [[Heinrich Hertz]] in 1888. These equations are considered to be among the most elegant edifices of mathematical physics. |
| | Maxwell's equations serve many purposes and take many forms. On the one hand, they are used in the solution of actual real-world problems of electromagnetic fields and radiation. On the other hand, they are the subject of admiration for their elegance. There are many T-shirts, typically obtainable on college campuses, sporting various forms of these equations. | | Maxwell's equations serve many purposes and take many forms. On the one hand, they are used in the solution of actual real-world problems of electromagnetic fields and radiation. On the other hand, they are the subject of admiration for their elegance. There are many T-shirts, typically obtainable on college campuses, sporting various forms of these equations. |