Bulk Modulus given Bulk Stress and Strain Solution

STEP 0: Pre-Calculation Summary
Formula Used
Bulk Modulus = Bulk Stress/Bulk Strain
K = Bstress/B.S
This formula uses 3 Variables
Variables Used
Bulk Modulus - (Measured in Pascal) - The Bulk Modulus is defined as the ratio of the infinitesimal pressure increase to the resulting relative decrease of the volume.
Bulk Stress - (Measured in Pascal) - The Bulk Stress is the force acting on the body from all directions causing change in its area.
Bulk Strain - The Bulk Strain ist he ratio of the change in the volume of a body that occurs when the body is placed under pressure, to the original volume of the body.
STEP 1: Convert Input(s) to Base Unit
Bulk Stress: 10564 Pascal --> 10564 Pascal No Conversion Required
Bulk Strain: 42.4 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
K = Bstress/B.S --> 10564/42.4
Evaluating ... ...
K = 249.150943396226
STEP 3: Convert Result to Output's Unit
249.150943396226 Pascal --> No Conversion Required
FINAL ANSWER
249.150943396226 249.1509 Pascal <-- Bulk Modulus
(Calculation completed in 00.004 seconds)

Credits

Created by Pragati Jaju
College Of Engineering (COEP), Pune
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18 Stress and Strain Calculators

Elongation Circular Tapered Bar
Go Elongation = (4*Load*Length of Bar)/(pi*Diameter of Bigger End*Diameter of Smaller End*Elastic Modulus)
Total Angle of Twist
Go Total Angle of Twist = (Torque Exerted on Wheel*Shaft Length)/(Shear Modulus*Polar Moment of Inertia)
Moment of Inertia for Hollow Circular Shaft
Go Polar Moment of Inertia = pi/32*(Outer Diameter of Hollow Circular Section^(4)-Inner Diameter of Hollow Circular Section^(4))
Equivalent Bending Moment
Go Equivalent Bending Moment = Bending Moment+sqrt(Bending Moment^(2)+Torque Exerted on Wheel^(2))
Deflection of Fixed Beam with Uniformly Distributed Load
Go Deflection of Beam = (Width of Beam*Beam Length^4)/(384*Elastic Modulus*Moment of Inertia)
Deflection of Fixed Beam with Load at Center
Go Deflection of Beam = (Width of Beam*Beam Length^3)/(192*Elastic Modulus*Moment of Inertia)
Elongation of Prismatic Bar due to its Own Weight
Go Elongation = (2*Load*Length of Bar)/(Area of Prismatic Bar*Elastic Modulus)
Axial Elongation of Prismatic Bar due to External Load
Go Elongation = (Load*Length of Bar)/(Area of Prismatic Bar*Elastic Modulus)
Hooke's Law
Go Young's Modulus = (Load*Elongation)/(Area of Base*Initial Length)
Equivalent Torsional Moment
Go Equivalent Torsion Moment = sqrt(Bending Moment^(2)+Torque Exerted on Wheel^(2))
Rankine's Formula for Columns
Go Rankine’s Critical Load = 1/(1/Euler’s Buckling Load+1/Ultimate Crushing Load for Columns)
Slenderness Ratio
Go Slenderness Ratio = Effective Length/Least Radius of Gyration
Moment of Inertia about Polar Axis
Go Polar Moment of Inertia = (pi*Diameter of Shaft^(4))/32
Bulk Modulus given Volume Stress and Strain
Go Bulk Modulus = Volume Stress/Volumetric Strain
Shear Modulus
Go Shear Modulus = Shear Stress/Shear Strain
Bulk Modulus given Bulk Stress and Strain
Go Bulk Modulus = Bulk Stress/Bulk Strain
Young's Modulus
Go Young's Modulus = Stress/Strain
Elastic Modulus
Go Young's Modulus = Stress/Strain

Bulk Modulus given Bulk Stress and Strain Formula

Bulk Modulus = Bulk Stress/Bulk Strain
K = Bstress/B.S

What is Bulk Modulus?

Bulk Modulus is the relative change in the volume of a body produced by a unit compressive or tensile stress acting uniformly over its surface.

How to Calculate Bulk Modulus given Bulk Stress and Strain?

Bulk Modulus given Bulk Stress and Strain calculator uses Bulk Modulus = Bulk Stress/Bulk Strain to calculate the Bulk Modulus, The Bulk Modulus given Bulk Stress and Strain is the relative change in the volume of a body produced by a unit compressive or tensile stress acting uniformly over its surface. Bulk Modulus is denoted by K symbol.

How to calculate Bulk Modulus given Bulk Stress and Strain using this online calculator? To use this online calculator for Bulk Modulus given Bulk Stress and Strain, enter Bulk Stress (Bstress) & Bulk Strain (B.S) and hit the calculate button. Here is how the Bulk Modulus given Bulk Stress and Strain calculation can be explained with given input values -> 0.636792 = 10564/42.4.

FAQ

What is Bulk Modulus given Bulk Stress and Strain?
The Bulk Modulus given Bulk Stress and Strain is the relative change in the volume of a body produced by a unit compressive or tensile stress acting uniformly over its surface and is represented as K = Bstress/B.S or Bulk Modulus = Bulk Stress/Bulk Strain. The Bulk Stress is the force acting on the body from all directions causing change in its area & The Bulk Strain ist he ratio of the change in the volume of a body that occurs when the body is placed under pressure, to the original volume of the body.
How to calculate Bulk Modulus given Bulk Stress and Strain?
The Bulk Modulus given Bulk Stress and Strain is the relative change in the volume of a body produced by a unit compressive or tensile stress acting uniformly over its surface is calculated using Bulk Modulus = Bulk Stress/Bulk Strain. To calculate Bulk Modulus given Bulk Stress and Strain, you need Bulk Stress (Bstress) & Bulk Strain (B.S). With our tool, you need to enter the respective value for Bulk Stress & Bulk Strain and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Bulk Modulus?
In this formula, Bulk Modulus uses Bulk Stress & Bulk Strain. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Bulk Modulus = Volume Stress/Volumetric Strain
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