Electromagnetic (EM) energy comes from switching the positive and negative poles of a magnet back and forth. It's how we produce electricity. EM energy as we know it's a vector form of energy, meaning the electrons involved move from one place to another.
Conventional EM energy has a wave form, like the waves of the ocean, or when, as a child , you shook a rope up and down and created a wave that way. These waves are transverse, meaning that the wave's energy goes in an axis (up and down), while the wave itself goes perpendicular to that, forward along the rope or in direction of the shore.
But James Clerk Maxwell in 1865, Nikola Tesla in 1899, and E. T. Whitaker in 1903 noted that there was another form of wave occurring along with the normal transverse EM energy, known as longitudinal EM energy. This form of wave energy is often known as scalar energy (as opposed to vector energy), as the particles associated do not travel anywhere. Another name given to the event is zero point energy.
Let me give you an example: suppose you and your friends were lined up next to one another, all facing in the same direction, and the person next to you gives your shoulder a shove, not rigid enough to knock you down, but enough to bump you into the person next to you. That person will bump the person next to them, and so on. What happened? Energy was transmitted along the line of people, but no one truly went anywhere. You and your friends just made a longitudinal wave.
Longitudinal waves are also named compression waves. Another image which may help you to picture a compression wave is when you drop a stone into water and the waves spread out from that. The pebble drops down (transmitting vector energy as transverse EM energy does); the longitudinal waves form 90 degrees to the stone on the surface of the water, bobbing a leaf up and down but never moving it away. It's not just the same, but optimistically you get the idea.
So where does this longitudinal (or scalar) EM energy come from? The concept is that when electrons become part of an electrical current in traditional (transverse) EM energy, the remainder of the atom has an equal and opposite reaction in the other direction, to balance things out. The pebble drops down; the water rushes up to fill up the space. The 2 conflicting reactions of the electrons and their atoms leads to longitudinal EM waves to form, just as waves form after a pebble drops into water.
As the early 20th century, several investigators have tried to develop practical applications of scalar EM energy including medical and health purposes, domestic energy production and weaponization, with unstable degrees of success. One of the most recent applications is the scalar energy pendant reported to have several health benefits.
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