answersLogoWhite

0


Best Answer

Albert Einstein.

Except that the equation was e = mc2

User Avatar

Wiki User

11y ago
This answer is:
User Avatar

Add your answer:

Earn +20 pts
Q: What scientist is famous for the equation E equals MC?
Write your answer...
Submit
Still have questions?
magnify glass
imp
Related questions

What scientist developed the equation E equals MC squared?

I'm pretty sure it was Einstein....


Famous scientist and what they are famous for?

Albert Einstein - famous for his theory of relativity and the equation E=mc^2.


What is FG equals mc2d?

The equation "FG = mc^2" is not a standard physics equation. "E=mc^2" (energy equals mass times the speed of light squared) is a famous equation from Einstein's theory of relativity that relates energy, mass, and the speed of light. If "FG" refers to a force, then the equation "FG = mc^2" doesn't have a standard interpretation in physics.


What was Albert Eintsien famous for?

For his famous equation of: E = MC squared


Who coined the equation e equals mc square?

Albert Einstein.


Which theory is expressed in the equation in E equals mc squared?

Relativity.


What famous equation did Einstein invent?

E=mc^2


WHAT IS the famous theory of albert Einstein?

E=mc^2 Is his most famous equation.


What does c stand for in Einsteins equation E equals mc?

speed of light


Was Albert Einstein A Famous Scientist?

Yes, Albert Einstein was a famous scientist known for his contributions to the field of theoretical physics, particularly his theory of general relativity and the equation E=mc^2. He was awarded the Nobel Prize in Physics in 1921 for his explanation of the photoelectric effect.


What element is named after famOUS scientist emc2?

The element named after the famous scientist equation E=mc^2 is einsteinium. It is a synthetic element with the atomic number 99 and named in honor of physicist Albert Einstein.


How is Einstein's famous equation E equals mc?

Einstein's famous equation E=mc^2, where E is energy, m is mass, and c is the speed of light, demonstrates the relationship between mass and energy. It implies that mass and energy are interchangeable and can be converted into each other. This equation is a cornerstone of modern physics and has been a key concept in the development of nuclear energy and particle physics.