The theory of relativity, proposed by Albert Einstein, is used to derive the equation Emc2. This equation shows the relationship between energy (E), mass (m), and the speed of light (c). It demonstrates that mass can be converted into energy and vice versa, highlighting the concept of mass-energy equivalence.
e=mc2 2nd Answer: " e-mc^2" is an equation that we know is true, but it is not a theory. Einstein's most famous theories are the Special Theory of Relativity and the General Theory of Relativity.
robert bunesnbunsen burnerisaac newton newton metersmarie curiecuries (cures)
Albert Einstein discovered the theory of relativity and is known for this famous equation E=MC2 which was used to create atomic bombs..
Albert Einstein is famous for developing the theory of relativity, which revolutionized our understanding of space, time, and gravity. He also made significant contributions to quantum theory and led to the development of the famous equation E=mc^2.
The famous equation is E = m c squared. c is the speed of light- a constant. m is mass. Mass is the answer to your question. Mass can be converted to a lot of energy, but not easily, unfortunately.
He is famous for his two papers on relativity. Special relativity and general relativity. He is also famous for his paper on brownian motion.
e=mc2 2nd Answer: " e-mc^2" is an equation that we know is true, but it is not a theory. Einstein's most famous theories are the Special Theory of Relativity and the General Theory of Relativity.
robert bunesnbunsen burnerisaac newton newton metersmarie curiecuries (cures)
Albert Einstein discovered the theory of relativity and is known for this famous equation E=MC2 which was used to create atomic bombs..
Albert Einstein is famous for developing the theory of relativity, which revolutionized our understanding of space, time, and gravity. He also made significant contributions to quantum theory and led to the development of the famous equation E=mc^2.
The famous equation is E = m c squared. c is the speed of light- a constant. m is mass. Mass is the answer to your question. Mass can be converted to a lot of energy, but not easily, unfortunately.
Albert Einstein is credited with discovering the theory of relativity. His groundbreaking work, consisting of the special theory of relativity in 1905 and the general theory of relativity in 1915, fundamentally changed our understanding of space, time, and gravity.
Albert Einstein is not known for inventing a particular object but for his contributions to theoretical physics, particularly the theory of relativity (special and general). His famous equation E=mc^2 describes the relationship between energy and mass.
The theory of relativity states that motion and gravity can affect the passage of time and the shape of space. It also describes the relationship between energy and mass, summarized by the famous equation E=mc^2.
Albert Einstein is famous for his theory of relativity, which revolutionized our understanding of space, time, and gravity. He also made significant contributions to the development of quantum mechanics and the photoelectric effect. His most famous equation, E=mc^2, demonstrates the relationship between energy and mass.
Yes, according to Einstein's theory of relativity, energy can transform into matter and vice versa through the famous equation Emc2.
e=mc2 2nd Answer: " e-mc^2" is an equation that we know is true, but it is not a theory. Einstein's most famous theories are the Special Theory of Relativity and the General Theory of Relativity.