E=mc2 demonstrates that matter can be changed into energy and vice versa, which would appear to mean that matter can be created and destroyed. A way around this would be to consider mass and energy as part of the same value.
Yes. Energy that enters a black hole, such as light, becomes part of its mass.
Because SCIENCE
Energy equals mass times the speed of light squared. C is the speed of light
You can use the mass-energy equivalence equation, E=mc^2, where E is energy, m is mass, and c is the speed of light. Calculate the mass defect by subtracting the total mass of the products (helium + neutron) from the total mass of the reactants (deuterium x 2). Then multiply the mass defect by c^2 to get the energy released, which should equal 3.14x10^8 Joules.
The formula (E=mc^2), formulated by Albert Einstein, expresses the equivalence of mass (m) and energy (E), with (c) representing the speed of light in a vacuum. This groundbreaking equation revolutionized physics by demonstrating that mass can be converted into energy and vice versa, fundamentally altering our understanding of the universe. It has critical implications in both theoretical physics, such as in nuclear reactions and cosmology, and practical applications, including nuclear power and medical technologies. Ultimately, (E=mc^2) underscores the profound interconnectedness of mass and energy in the fabric of reality.
In Einsteins equation, E mc2, E is energy, m is mass, and c is the speed of light
The units of energy in the equation Emc2 are joules (J).
it is a scientific equation made my albert einstein It is the Formula for WATER (EMC2)
The units of measurement for energy in the equation Emc2 are joules (J).
If you consider mass and energy to be equivalent and interchangeable, it does not conflict with the law of conservation of energy. E=mc2 states that energy is mass and mass is energy, so it does not disprove the law of conservation of energy.
yes
No, fusion does not violate the law of conservation of matter. In fusion reactions, the total mass of the reactants is equal to the total mass of the products, as mass is converted into energy according to Einstein's famous equation, Emc2.
The mass of an object
The speed of light in a vacuum, represented by the constant "c" in the equation Emc2, is approximately 299,792,458 meters per second.
E=mc^2 is Einstein's famous equation which shows the relationship between energy (E), mass (m), and the speed of light (c). It demonstrates that energy and mass are interchangeable, and that a small amount of mass can be converted into a large amount of energy. This equation is the foundation of nuclear reactions and understanding the potential of nuclear energy.
nuclear power
E=mc^2 is known as Einstein's famous equation, which describes the relationship between energy (E), mass (m), and the speed of light (c). It states that energy and mass are interchangeable and that a small amount of mass can be converted into a large amount of energy, as seen in nuclear reactions.