Potential due to point Charge💥Potential due to Dipole💥Part 1/4 Chapter 2 Potential & Capacitance

Опубликовано: 26 Октябрь 2024
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Playlist Chapter 1: Electric Charges & Fields
   • Electric Charge💥Basic properties of C...  

Playlist Chapter 2: Electrostatic Potential & Capacitance
   • Potential due to point Charge💥Potenti...  

CBSE Class 12 Physics
NCERT Chapter 2 Potential & Capacitance
NCERT Chapter 2 Electrostatic Potential & Capacitance
Potential due to Point Charge
Potential at Axial Point due to Dipole
Potential at due equatorial Point due to Dipole
Potential at any general point due to Dipole
Potential due to Continuous Charge distribution
Relation between Electric field & potential
Potential due to uniformly Charged shell
electrostatic potential
Potential difference

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#dipole

Chap 2 part 1 Electrostatic Potential Capacitance

00:00:00 Electrostatic Potential Capacitance
00:02:55 Potential Difference
00:06:20 SI Unit Of Potential Difference is Volt
00:06:49 Electric Potential
00:09:48 SI Unit Of Potential
00:10:40 Electric Potential Due to a Point Charge
00:29:13 Electric Potential at An Axial Point of a Dipole
00:35:17 Electric Potential at an Equatorial Point of a Dipole
00:37:20 Electric potential at any General Point Due to a Dipole
00:46:15 Special Case
00:48:04 Differences between the Electric Potential Of a Dipole and a Single Charge
00:51:42 Electric Potential Due to a System of Charges
00:52:39 Electric Potential Due to a Continuous of Charges Distribution
00:56:34 Electric Potential Due to Uniformly Charged Thin Spherical Shell
01:05:54 Numericals
01:16:19 Relation Between Electric Field and Potential
01:27:00 Computing Electric Potential From Electric Field
01:27:16 Numericals

In the context of Class 12 physics, the term "dipole potential" is not a standard term or concept. It is possible that you may be referring to a different concept related to dipole moments and electric potential.

However, I can explain the concepts of dipole moments and electric potential, which are related to each other.

1. Dipole Moment: In physics, a dipole is a pair of equal and opposite charges separated by a small distance. The dipole moment is a measure of the strength of the dipole and is defined as the product of the magnitude of one of the charges and the distance between them. It is denoted by the symbol "p" and has units of charge multiplied by distance (e.g., coulomb-meter or debye).

2. Electric Potential: Electric potential, also known as voltage, is the amount of electric potential energy per unit charge at a given point in an electric field. It is a scalar quantity and is denoted by the symbol "V." The electric potential is responsible for the flow of electric charges in a circuit or the behavior of charges in an electric field.

When a dipole is placed in an electric field, it experiences a torque and tends to align itself with the field. The work done in rotating the dipole against the torque results in a potential energy associated with the dipole. This potential energy is referred to as the dipole potential energy.

The electric potential due to a dipole at a point in space can be calculated using the formula:

V = (k * p * cosθ) / r^2

Where:
V is the electric potential at the point,
k is the electrostatic constant (9 x 10^9 N m^2/C^2),
p is the dipole moment,
θ is the angle between the dipole moment and the line connecting the point to the dipole,
r is the distance between the point and the dipole.

This formula represents the potential due to an electric dipole in a vacuum. It can be used to calculate the potential at different points in space surrounding the dipole.

Please note that if you were referring to a different concept or context for "dipole potential," provide more information, and I'll be happy to assist you further.