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Mechanical Vibrations
Transmissibility Ratio in Mechanical Vibrations Formulas
Transmissibility Ratio is the ratio of the force transmitted (FT) to the force applied (F) is known as the isolation factor or transmissibility ratio of the spring support. And is denoted by ε.
Formulas to find Transmissibility Ratio in Mechanical Vibrations
f
x
Transmissibility Ratio
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f
x
Transmissibility Ratio given Natural Circular Frequency and Critical Damping Coefficient
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f
x
Transmissibility Ratio given Natural Circular Frequency and Magnification Factor
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f
x
Transmissibility Ratio if there is No Damping
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f
x
Transmissibility Ratio given Magnification Factor
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f
x
Transmissibility Ratio given Force Transmitted
Go
Mechanical Vibrations formulas that make use of Transmissibility Ratio
f
x
Applied Force given Transmissibility Ratio and Maximum Displacement of Vibration
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f
x
Applied Force given Transmissibility Ratio
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f
x
Magnification Factor given Transmissibility Ratio
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f
x
Magnification Factor given Transmissibility Ratio given Natural Circular Frequency
Go
f
x
Maximum Displacement of Vibration given Transmissibility Ratio
Go
f
x
Natural Circular Frequency given Transmissibility Ratio
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f
x
Transmitted Force given Transmissibility Ratio
Go
List of variables in Mechanical Vibrations formulas
f
x
Maximum Displacement
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f
x
Stiffness of Spring
Go
f
x
Damping Coefficient
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f
x
Angular Velocity
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f
x
Applied Force
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f
x
Critical Damping Coefficient
Go
f
x
Natural Circular Frequency
Go
f
x
Magnification Factor
Go
f
x
Force Transmitted
Go
FAQ
What is the Transmissibility Ratio?
Transmissibility Ratio is the ratio of the force transmitted (FT) to the force applied (F) is known as the isolation factor or transmissibility ratio of the spring support.
Can the Transmissibility Ratio be negative?
{YesorNo}, the Transmissibility Ratio, measured in {OutputVariableMeasurementName} {CanorCannot} be negative.
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