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What is the term for generalization about predictable ways in which matter and energy behave?

The generalization about predictable ways in which matter and energy behave is called a scientific law. Scientific laws describe observed phenomena and are based on repeated experimental observations.


What are the differences and similarities between matter and energy?

Friction and cohesiveness are the only differences. The matter has stronger potential energy with stronger cohesive forces and the energy has stronger kinetic energy with demonstration as frictional force.


What do therodynamics apply to?

Everything, all matter within existence is subject to the transfer of thermal energy. Thermodynamics help us to understand how matter will behave when undergoing a change in thermal energy.


Is energy made of the same particles as matter?

Energy has absolutely no volume or mass. However, energy and matter can be interchanged, and highly energetic particles behave as if they have more mass. When antimatter and matter collide, they annihilate, releasing their equivalent in energy. The "particles" of which energy can be said to be composed are "photons" which are discreet, massless packets of energy. The so-called "solar wind" is not energy, but consists of high-energy particles emitted by the Sun along with its radiated energy.


What is the transfer of thermal energy by collisions of particles of matter?

That is the conservation of energy. when particles collide no energy is lost but is transferred from one form to another.And this mechanism of heat transfer is called conduction.basically heat transfer is transfer of energy. conduction and convection but require material medium , this shows how energy can behave like particals. radiation on the other hand is a trasfer of heat which requires no material medium and shows how energy behaves like waves. so heats can behave as both particals and waves of energy. its called the dual nature of matter or energy since matter is basically potential energy.


How do particles of matter behave when thermal energy is increased?

When thermal energy is increased, the particles of matter move faster and with more kinetic energy. This can lead to the material expanding, changing phase (such as melting or evaporating), or increasing in temperature. Overall, the increase in thermal energy causes the particles to have more vibrational and translational motion.


How does light behave when it interactes with matter?

as a photon


How electric charges behave?

Electric charges behave as a matter and it contains three building blocks of matter, they are :electrons, protons and neutrons of which two are electrically charge


Who said matter is made of particles that are constant motion and that motion is predictable?

Democritus


Who said that matter is made of particles that are in constant motion and that motion is predictable?

Democritus


What are the properties of a photon and how do they contribute to its behavior and interactions with matter?

Photons are fundamental particles of light with properties such as energy, momentum, and polarization. These properties determine how photons behave and interact with matter. For example, the energy of a photon determines its color and intensity, while its momentum affects how it transfers energy to matter. The polarization of a photon influences how it interacts with polarized materials. Overall, the properties of a photon play a crucial role in its behavior and interactions with matter.


How do particle matter behave?

I know that particles in matter move a lot but i not quite sure what it means