Miss Distance between Particles in Collision Formula

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Miss Distance is defined so that it is how near to one another the particles A and B approach, when there is no force acting between them. Check FAQs
b=(R2)EcentrifugalET
b - Miss Distance?R - Interparticle Distance Vector?Ecentrifugal - Centrifugal Energy?ET - Total Energy Before Collision?

Miss Distance between Particles in Collision Example

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Here is how the Miss Distance between Particles in Collision equation looks like with Values.

Here is how the Miss Distance between Particles in Collision equation looks like with Units.

Here is how the Miss Distance between Particles in Collision equation looks like.

59.068Edit=(26Edit2)8Edit1.55Edit
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Miss Distance between Particles in Collision Solution

Follow our step by step solution on how to calculate Miss Distance between Particles in Collision?

FIRST Step Consider the formula
b=(R2)EcentrifugalET
Next Step Substitute values of Variables
b=(262)8J1.55J
Next Step Prepare to Evaluate
b=(262)81.55
Next Step Evaluate
b=59.0680307616947
LAST Step Rounding Answer
b=59.068

Miss Distance between Particles in Collision Formula Elements

Variables
Functions
Miss Distance
Miss Distance is defined so that it is how near to one another the particles A and B approach, when there is no force acting between them.
Symbol: b
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Interparticle Distance Vector
Interparticle Distance Vector is the mean distance vector between microscopic particles (usually atoms or molecules) in a macroscopic body.
Symbol: R
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Centrifugal Energy
Centrifugal Energy is the energy related to a particle moving on a circular path.
Symbol: Ecentrifugal
Measurement: EnergyUnit: J
Note: Value should be greater than 0.
Total Energy Before Collision
Total Energy Before Collision is the quantitative property that must be transferred to a body or physical system to perform collision.
Symbol: ET
Measurement: EnergyUnit: J
Note: Value should be greater than 0.
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other formulas in Molecular Reaction Dynamics category

​Go Number of Bimolecular Collision per Unit Time per Unit Volume
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​Go Number Density for A Molecules using Collision Rate Constant
nA=ZvbeamnBA
​Go Cross Sectional Area using Rate of Molecular Collisions
A=ZvbeamnBnA
​Go Vibrational Frequency given Boltzmann's Constant
vvib=[BoltZ]T[hP]

How to Evaluate Miss Distance between Particles in Collision?

Miss Distance between Particles in Collision evaluator uses Miss Distance = sqrt(((Interparticle Distance Vector^2)*Centrifugal Energy)/Total Energy Before Collision) to evaluate the Miss Distance, The Miss Distance between Particles in Collision formula is defined as how near to one another the particles A and B approach, when there is no force acting between them. Technically, b is the component of the vector R. Miss Distance is denoted by b symbol.

How to evaluate Miss Distance between Particles in Collision using this online evaluator? To use this online evaluator for Miss Distance between Particles in Collision, enter Interparticle Distance Vector (R), Centrifugal Energy (Ecentrifugal) & Total Energy Before Collision (ET) and hit the calculate button.

FAQs on Miss Distance between Particles in Collision

What is the formula to find Miss Distance between Particles in Collision?
The formula of Miss Distance between Particles in Collision is expressed as Miss Distance = sqrt(((Interparticle Distance Vector^2)*Centrifugal Energy)/Total Energy Before Collision). Here is an example- 59.06803 = sqrt(((26^2)*8)/1.55).
How to calculate Miss Distance between Particles in Collision?
With Interparticle Distance Vector (R), Centrifugal Energy (Ecentrifugal) & Total Energy Before Collision (ET) we can find Miss Distance between Particles in Collision using the formula - Miss Distance = sqrt(((Interparticle Distance Vector^2)*Centrifugal Energy)/Total Energy Before Collision). This formula also uses Square Root (sqrt) function(s).
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