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physics

Kinetic Theory of Gases, Equations, Derivatives and FAQs

The kinetic theory of gases is a fundamental theory in physics that provides an explanation of the behavior of gases at the molecular level. It describes how gases consist of a large number of tiny particles, such as atoms or molecules, which are in constant motion. What is Kinetic Theory of Gases? The kinetic theory...Read More

Radioactive Decay, Definition, Types, Uses and Examples

Radioactive decay is a natural and spontaneous process by which the nucleus of an unstable atom undergoes a transformation, emitting radiation in the form of particles or electromagnetic waves. This process occurs because certain atomic nuclei are inherently unstable due to an imbalance between the forces holding the nucleus together and the forces trying to...Read More

Gamma Decay, Process, Examples and Applications

Gamma decay, also known as gamma emission or gamma radiation, is a type of radioactive decay involving the release of high-energy gamma-ray photons from an unstable atomic nucleus. Unlike alpha decay and beta decay, gamma decay does not change the atomic number (Z) or mass number (A) of the nucleus. Instead, it occurs to bring...Read More

Beta Decay, Types, Examples, Fermi’s Theory and uses

Beta decay is a type of radioactive decay that involves the transformation of an unstable atomic nucleus into a more stable one by the emission of either a beta-minus (β-) particle (an electron) or a beta-plus (β+) particle (a positron). This process allows for a change in the atomic number (Z) while conserving the mass...Read More

Alpha Decay, Process, Applications, and FAQs

Alpha decay is a type of radioactive decay in which an unstable atomic nucleus emits an alpha particle (α-particle), which consists of two protons and two neutrons. This process results in a decrease in both the atomic number and mass number of the nucleus. What is Alpha Decay? Alpha decay is a type of radioactive...Read More

Gay-Lussac’s Law, Examples, Applications, and Limitations.

Gay-Lussac’s law states that the pressure of a given mass of gas is directly proportional to its absolute temperature when the volume is kept constant. This means that if the temperature of a gas is increased, its pressure will increase proportionally. Conversely, if the temperature of a gas is decreased, its pressure will decrease proportionally....Read More

Charles’s Law, Formula, and Key Points to Know.

Charles’s law states that the volume of a given mass of gas is directly proportional to its absolute temperature when pressure is kept constant. This means that if the temperature of a gas is increased, its volume will increase proportionally. Conversely, if the temperature of a gas is decreased, its volume will decrease proportionally. Charles’s...Read More

Antineutrinos, Properties, Applications, and Uniqueness.

Antineutrinos are subatomic particles that have a place with the group of neutrinos, which are major particles in the Standard Model of molecule material science. They are the antiparticles of neutrinos and have similar mass as neutrinos, yet inverse charge and other quantum properties. What are antineutrinos? Antineutrinos are subatomic particles that have a place...Read More

Electrons, Properties, Uses and their Uniqueness.

Electrons are subatomic particles that are found in all atoms. They are negatively charged and play a crucial role in various physical phenomena, such as electricity, magnetism, chemistry, and thermal conductivity. What are electrons? Electrons are subatomic particles that are found in all atoms. They are negatively charged and play a crucial role in various...Read More

Neutrons Definition, Properties, and Uses.

Neutrons are subatomic particles found in the atomic nucleus, tightly bound with protons. It is one of the three fundamental particles that make up the nucleus of an atom, along with protons and electrons. The number of protons and neutrons in the nucleus determines an element’s isotope, while the number of protons defines the element’s...Read More
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