Thus, during any chemical reaction and low-energy thermodynamic processes in an isolated system.
Kwenye principle of mass conservation
Utaona Condition yake ni low energy ila Kwenye Singularity.
It was dense, tiny na wakati inalipuka(big bang) kulikuwa na high temperature, Sasa unagundua hii kanuni ya mass inakuwa distorted.
Hata Einstein alibidi aimodefy ili iweze kufiti kwenye General relativity theory.
Yes itabidi sasa tuanze kwenda sawa tunarudi kwenye Quantum Physics.
Na itabidi tukumaliane kwamba:-
Matter is not interchangeably to energy but energy is the one responsible of generation of matter from the big bang.
Haya hapa ni maelezo ya Basic particles with formulas of energy
The basic particles in quantum physics are fermions and bosons. Fermions include quarks and leptons, while bosons include photons, W and Z bosons, gluons, and the Higgs boson. These particles interact with each other and generate energy through various mechanisms, which can be described by mathematical formulas.
1. Photons:
Photons are particles of light and electromagnetic radiation. They are responsible for carrying energy in the form of electromagnetic waves. The energy of a photon is given by the formula:
E = hf
where E is the energy of the photon, h is Planck's constant (6.626 x 10^-34 joule-seconds), and f is the frequency of the electromagnetic wave.
2. W and Z Bosons:
W and Z bosons are responsible for mediating the weak nuclear force, which is responsible for radioactive decay. They carry energy between particles that participate in weak interactions. The energy of a W or Z boson is given by the formula:
E = mc^2
where E is the energy of the boson, m is its mass, and c is the speed of light.
3. Gluons:
Gluons are responsible for mediating the strong nuclear force, which holds the nucleus of an atom together. They carry energy between quarks, which are the building blocks of protons and neutrons. The energy of a gluon is given by the formula:
E = mc^2
where E is the energy of the gluon, m is its mass, and c is the speed of light.
4. Higgs Boson:
The Higgs boson is responsible for giving particles mass. It interacts with other particles and generates energy through the Higgs field. The energy of the Higgs boson is given by the formula:
E = mc^2
where E is the energy of the Higgs boson, m is its mass, and c is the speed of light.
In summary, the basic particles in quantum physics interact with each other to generate energy through various mechanisms. The energy of a particle can be calculated using mathematical formulas, which take into account the particle's mass, speed, and other properties.