Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
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Ishita Goyal
Meerut Institute of Engineering and Technology (MIET), Meerut
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7 Other formulas that you can solve using the same Inputs

Saturation current when doping concentration is given
Saturation current=Cross-section area of base-emitter junction*[Charge-e]*Electron Diffusivity*(Intrinsic carrier concentration)^2/Width of base*Doping concentration of the base GO
Emitter current through minor carrier concentration
Emitter current=Cross-section area of base-emitter junction*[Charge-e]*Electron Diffusivity*(-Thermal Equilibrium Value/Width of base) GO
Saturation current
Saturation current=Cross-section area of base-emitter junction*[Charge-e]*Electron Diffusivity*Thermal Equilibrium Value/Width of base GO
Earth Thrust Horizontal Component when Sum of Righting Moments is Given
Horizontal component of earth thrust=((Coefficient of sliding friction*Total downward force on soil)/1.5) GO
Pressure P2 when the Resultant is within the Middle Third and Width of Base is Given
pressure 2=((Total downward force on soil/Area of base)*(1-((6*Distance)/Width of base))) GO
Pressure when Resultant is Outside Middle Third
Pressure=2*Total downward force on soil/(3*middle third distance) GO
Pressure P1 when Resultant is at Middle Third Edge
pressure p one=2*Total downward force on soil/Length GO

Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given Formula

pressure 1=((Total downward force on soil/Area of base)*(1+((6*Distance)/Width of base)))
P<sub>1=((R<sub>v</sub>/A)*(1+((6*e)/L)))
More formulas
Earth Thrust Horizontal Component when Sum of Righting Moments is Given GO
Pressure P2 when the Resultant is within the Middle Third and Width of Base is Given GO
Pressure P1 when Resultant is at Middle Third Edge GO
Pressure when Resultant is Outside Middle Third GO
Retaining Wall Righting Moment GO
Overturning Moment GO

What is pressure ?

Pressure, in the physical sciences, the perpendicular force per unit area, or the stress at a point within a confined fluid.

How to Calculate Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given?

Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given calculator uses pressure 1=((Total downward force on soil/Area of base)*(1+((6*Distance)/Width of base))) to calculate the pressure 1, The Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given formula is defined when dimension of beam and total downward force on soil is given. pressure 1 and is denoted by P1 symbol.

How to calculate Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given using this online calculator? To use this online calculator for Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given, enter Total downward force on soil (Rv), Area of base (A), Distance (e) and Width of base (L) and hit the calculate button. Here is how the Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given calculation can be explained with given input values -> 4.250E-5 = ((5/10)*(1+((6*5)/4))).

FAQ

What is Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given?
The Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given formula is defined when dimension of beam and total downward force on soil is given and is represented as P1=((Rv/A)*(1+((6*e)/L))) or pressure 1=((Total downward force on soil/Area of base)*(1+((6*Distance)/Width of base))). Total downward force on soil is the net force on soil in vertical direction, Area of base is the total area of footing, Distance parallel to L from centroid of base to Rv and Width of base of the footing of the wall.
How to calculate Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given?
The Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given formula is defined when dimension of beam and total downward force on soil is given is calculated using pressure 1=((Total downward force on soil/Area of base)*(1+((6*Distance)/Width of base))). To calculate Pressure P1 when the Resultant is within the Middle Third and Width of Base is Given, you need Total downward force on soil (Rv), Area of base (A), Distance (e) and Width of base (L). With our tool, you need to enter the respective value for Total downward force on soil, Area of base, Distance and Width of base and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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