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What is dimentional formula of thermal resistance?

The dimensional formula of thermal resistance is MK^(-1) or ML^2T^(-3)θ^(-1), where M represents mass, L represents length, T represents time, and θ represents temperature.


What is the dimensional formula of Resistance?

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


What is dimensional formula of resistance?

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 dimensional analysis formula?

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What is the formula for converting kinetic energy into thermal energy?

The formula for converting kinetic energy into thermal energy is through the process of friction, where the kinetic energy of an object is converted into heat energy due to the resistance encountered during movement.


What is the dimensional formula for current?

One way to calculate current is using ohms law; current equals voltage divided by resistance or: I=V/R Where I is current, V is voltage and R is resistance.


What is the dimensional formula of young's modulus?

[Young's Modulus] = M1L-1T-2 __> this is the dimensional formula


What is is the dimensional formula of electric current?

The dimensional formula of electric current is [I] = [A], where I represents current and A represents ampere.


Which has the greater resistance thick wire or a thin of the same length?

The thermal resistance of a wire is proportional to ln(r2/r1), meaning that a thicker wire has a greater thermal resistance.


What is thermal risistance?

Thermal resistance is a measure of a material's ability to resist the flow of heat through it. It is used to quantify how well a material can insulate against heat transfer. A lower thermal resistance value indicates better thermal insulation properties.


What is the dimensional formula for angular velocity?

The dimensional formula for angular velocity is T-1, where T represents time.


How the heat losses through insulation can be calculated?

Heat losses through insulation can be calculated using the formula Q = (T1 - T2) / R, where Q is the heat loss, T1 and T2 are the temperatures on the two sides of the material, and R is the thermal resistance of the insulation material. Thermal resistance can be determined using the formula R = L / (k * A), where L is the thickness of the material, k is the thermal conductivity, and A is the cross-sectional area. By calculating the thermal resistance and temperature difference, the heat loss through insulation can be estimated.