The dimensional formula of a physical quantity represents how it is composed of fundamental dimensions like length, mass, and time. For example, the dimensional formula of velocity is [LT^-1] where L represents length and T represents time. The dimension of a physical quantity refers to the type of fundamental dimension it represents, like length, mass, or time.
The one-dimensional elastic collision formula is derived from the principles of conservation of momentum and conservation of kinetic energy. By applying these principles to the collision of two objects in one dimension, the formula can be derived to calculate the final velocities of the objects after the collision.
The dimensional formula for relative density is the same as that for density, which is [M L^-3], where M represents mass and L represents length. Since relative density is a ratio of densities, it is a dimensionless quantity.
Scalar quantity is a physical quantity that has magnitude only, without any direction. It is often represented by a number with a unit. There is no specific formula for scalar quantity as it is independent of directions. Examples of scalar quantities include mass, temperature, and speed.
Quantities like potential energy, kinetic energy, heat, torque have same dimensional formulae, ie [ML2T-2]
The dimensional formula of electric current is [I] = [A], where I represents current and A represents ampere.
the formula showing the relation between the unit of any physical quantity n the unit of fundamental physical quantity is called dimensional formula.........of dat quantity
it is a pure number and has no dimension
what is the formula for finding a 3 dimensional square
Since speed or velocity = distance/time ,its dimensional formula =L/T = [MoLT-1]
The Coulomb is a unit of electric charge. [Charge] is a fundamental quantity.
The one-dimensional elastic collision formula is derived from the principles of conservation of momentum and conservation of kinetic energy. By applying these principles to the collision of two objects in one dimension, the formula can be derived to calculate the final velocities of the objects after the collision.
The dimensional formula for relative density is the same as that for density, which is [M L^-3], where M represents mass and L represents length. Since relative density is a ratio of densities, it is a dimensionless quantity.
Scalar quantity is a physical quantity that has magnitude only, without any direction. It is often represented by a number with a unit. There is no specific formula for scalar quantity as it is independent of directions. Examples of scalar quantities include mass, temperature, and speed.
Resistance = V/I Dimensional formula for V ML2T -3A -1 Dimensional formula for I A Dimensional formula for R= ML2T -3A -1 / A = ML2T -3A -2
Resistance = V/I Dimensional formula for V ML2T -3A -1 Dimensional formula for I A Dimensional formula for R= ML2T -3A -1 / A = ML2T -3A -2
[Young's Modulus] = M1L-1T-2 __> this is the dimensional formula
Quantities like potential energy, kinetic energy, heat, torque have same dimensional formulae, ie [ML2T-2]