the answer to this question is theory theory
Yes, according to the law of conservation of energy, energy is always involved whenever matter is moved or changed. This energy can take various forms such as kinetic, potential, thermal, or chemical energy.
The law of conservation of matter and energy states that matter and energy cannot be created or destroyed, only changed in form. This principle is fundamental to understanding the interactions and transformations of matter and energy in the universe.
Matter has potential energy due to the arrangement of its particles and their interactions. When particles are positioned in a way that allows them to interact or move in relation to each other, potential energy is stored within the system. This potential energy can be released and converted into other forms of energy under certain conditions.
Matter and energy are interrelated through Einstein's famous equation, E=mc^2, which shows that energy can be converted into matter and vice versa. In particle physics, this relationship is demonstrated through processes such as particle-antiparticle annihilation and pair production. Ultimately, matter and energy are different forms of the same fundamental entity and can be transformed into each other under certain conditions.
Yes, according to Einstein's theory of relativity (E=mc^2), energy can be transformed into matter and vice versa. This process occurs under specific conditions, such as high-energy collisions in particle accelerators or during the formation of particles in the early universe.
ENERGY
through energy and inertia the matter changed.
Yes, according to the law of conservation of energy, energy is always involved whenever matter is moved or changed. This energy can take various forms such as kinetic, potential, thermal, or chemical energy.
The law of conservation of matter and energy states that matter and energy cannot be created or destroyed, only changed in form. This principle is fundamental to understanding the interactions and transformations of matter and energy in the universe.
A change in the state of matter occurs when heat energy is added or removed.
Matter cannot be created or destroyed. It can only be changed from one form to another. However, Einstein and other scientists have shown us that matter and energy are interchangeable. Matter is changed into energy in the sun and in other nuclear reactions, (E = mc2).
the amount of energy defines what state of matter a substance is in, and this can be changed by heating, because by heating you are giving energy to particles, so a solid will turn to liquid which in turn will turn to gs
Candle while burning, its wax gets burnt and matter gets changed into heat and light energy. These get radiated and pass away. So we cannot get back the candle material. Energy can neither be created nor be distroyed. This cannot be violated in any case. But matter can be changed into energy. So to get back the matter we have to know the technique to collect heat and light energy and know the skill to change it back to matter.
At the time of the big bang (approximately 13.7 billion years ago) there was no solid matter in the universe, it was all energy, located in space and time. The universe had to cool down considerably before some of the energy was able to condense into matter.
The total quantity of energy in the universe cannot be destroyed, it can only be changed from one form to another. Matter is a compacted form of energy thus it can be created or destroyed as matter (nuclear fusion or fission) but the energy doesn't change.
Matter has potential energy due to the arrangement of its particles and their interactions. When particles are positioned in a way that allows them to interact or move in relation to each other, potential energy is stored within the system. This potential energy can be released and converted into other forms of energy under certain conditions.
Matter and energy are interrelated through Einstein's famous equation, E=mc^2, which shows that energy can be converted into matter and vice versa. In particle physics, this relationship is demonstrated through processes such as particle-antiparticle annihilation and pair production. Ultimately, matter and energy are different forms of the same fundamental entity and can be transformed into each other under certain conditions.