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What is the relation between electromagnetic force and weak nuclear force?

What is the relation between electromagnetic force and weak nuclear force?

The weak interaction or weak nuclear force is responsible for some nuclear phenomena such as beta decay. Electromagnetism and the weak force are now understood to be two aspects of a unified electroweak interaction — this discovery was the first step toward the unified theory known as the Standard Model.

What is the equation of electromagnetic force?

The entire electromagnetic force F on the charged particle is called the Lorentz force (after the Dutch physicist Hendrik A. Lorentz) and is given by F = qE + qv × B.

What is the relation of electromagnetic force?

Electromagnetic Force The direction of magnetic flux produced by a permanent magnet is always from N-pole to S-pole. When a conductor is placed in a magnetic field and current flows in the conductor, the magnetic field and the current interact each other to produce force. The force is called “Electromagnetic force”.

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Which is stronger electromagnetic force or weak force?

The Four Fundamental Forces and their strengths. Weak Nuclear Force – Next weakest; but short range. Electromagnetic Force – Stronger, with infinite range.

Is the nuclear force the same as electromagnetic force?

The electromagnetic force is a long range force which acts of charged particles. Like charges repel and unlike charges attract. The strong nuclear force is very short range and can only bind adjacent protons and neutrons. The electromagnetic force is long range.

What is the formula of weak nuclear force?

Weak interaction – Force between two weakly interacting objects which are r meters apart is given by: F(weak) = 0 N Strong interaction – Force between two strongly interacting objects which are r meters apart is given by: F(strong) = 10000000000 N or equally well 0 N ( I picked an arbitrary number of 0, just to …

What does the weak force do?

weak interaction, also called weak force or weak nuclear force, a fundamental force of nature that underlies some forms of radioactivity, governs the decay of unstable subatomic particles such as mesons, and initiates the nuclear fusion reaction that fuels the Sun.

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Is the strongest force among fundamental forces?

The strong nuclear force, also called the strong nuclear interaction, is the strongest of the four fundamental forces of nature.

How strong is the strong force?

On subatomic scales of about 1 femtometre, or 10-15m , it is by far the strongest of the four forces, 137 times stronger than electromagnetism, and a million times stronger than the weak interaction.

What is the electromagnetic weak force?

The weak force acts only across distances smaller than the atomic nucleus, while the electromagnetic force can extend for great distances (as observed in the light of stars reaching across entire galaxies), weakening only with the square of the distance.

What is the value of K for electromagnetic force?

As with all forces, electromagnetic force is measured in Newtons (N). The constant k has a specific value, 9 × 10 9 N m 2 / C 2. Charge is measured in coulombs (C), and you input the sign of the charge (+ or −) along with the strength, so the equation has a positive value for repulsion and a negative one for attraction.

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What is the difference between the weak force and electromagnetic force?

The Electromagnetic Force, quantized in the Quantum Electro Dynamic theory made computable by Richard Feynman and the Weak Force are united by the Yang Mills field theory and the Renormalization process also bases on Feynman diagrams, found and proven by Tini Veltman and Gerard ’t Hooft.

What is the relationship between electric and magnetic force?

It describes how charged particles react to electric and magnetic fields, as well as the fundamental links between them. Electromagnetic force, like all forces, is measured in Newtons. Electrostatic forces are described by Coulomb’s law, and both electric and magnetic forces are covered by the Lorentz force law.

How do you find the force of electromagnetic repulsion?

As with all forces, electromagnetic force is measured in Newtons (N). The constant k has a specific value, 9 × 10 9 N m 2 / C 2 . Charge is measured in coulombs (C), and you input the sign of the charge (+ or −) along with the strength, so the equation has a positive value for repulsion and a negative one for attraction.