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Albert Einstein discovered the mathematical relationship between?

matter and energy


The mathematical relationship between matter and energy E equals mc2 was discorvered by?

it was discovered by Albert Einstein.


The mathematical relationship between matter and energy E mc2 was discovered by?

Albert Einstien


Who first discovered the mathematical relationship between circumference and diameter that you know as pi?

The Egyptians


Describe how albert Einstein discovered the matter and energy?

Albert Einstein developed the theory of relativity, which led to the famous equation E=mc^2 that describes the relationship between matter and energy. Through mathematical analysis and thought experiments, Einstein posited that energy and matter are interchangeable and can be converted into one another, revolutionizing our understanding of the universe.


Who discovered the relationship between the electric current and resistance?

This relationship was discovered by Karl Georg Ohm.


What is a monotonic transformation and how does it impact the relationship between variables in a mathematical function?

A monotonic transformation is a mathematical function that preserves the order of values in a dataset. It does not change the relationship between variables in a mathematical function, but it can change the scale or shape of the function.


Who developed the formula for the relationship between matter and energy?

Albert Einstein


What is the relationship between mansa musa and sundiata?

Ask Albert Einstein.


What describes the relationship between energy and matter?

Albert Einstein in 1905


Which scientist discovered the relationship between electricity and magnetism?

The relationship between electricity and magnetism was discovered by the scientist Michael Faraday in the 19th century.


How do monotonic transformations affect the relationship between variables in a mathematical function?

Monotonic transformations do not change the relationship between variables in a mathematical function. They only change the scale or shape of the function without altering the overall pattern of the relationship.