Transit Time from Center of Sphere Formula

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Transit Time is the time taken for electron to travel from center of a sphere to the surface. Check FAQs
τD=RD2(π2)DC
τD - Transit Time?RD - Radius of Sphere for Transit?DC - Diffusion Coefficient for Transit?π - Archimedes' constant?

Transit Time from Center of Sphere Example

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Here is how the Transit Time from Center of Sphere equation looks like with Values.

Here is how the Transit Time from Center of Sphere equation looks like with Units.

Here is how the Transit Time from Center of Sphere equation looks like.

6.3E-5Edit=0.1Edit2(3.14162)16Edit
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Transit Time from Center of Sphere Solution

Follow our step by step solution on how to calculate Transit Time from Center of Sphere?

FIRST Step Consider the formula
τD=RD2(π2)DC
Next Step Substitute values of Variables
τD=0.1m2(π2)16mm²/s
Next Step Substitute values of Constants
τD=0.1m2(3.14162)16mm²/s
Next Step Prepare to Evaluate
τD=0.12(3.14162)16
Next Step Evaluate
τD=6.33257397764611E-20s
Next Step Convert to Output's Unit
τD=6.33257397764611E-05fs
LAST Step Rounding Answer
τD=6.3E-5fs

Transit Time from Center of Sphere Formula Elements

Variables
Constants
Transit Time
Transit Time is the time taken for electron to travel from center of a sphere to the surface.
Symbol: τD
Measurement: TimeUnit: fs
Note: Value can be positive or negative.
Radius of Sphere for Transit
Radius of Sphere for Transit is a straight line from the centre to the circumference of a circle or sphere.
Symbol: RD
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Diffusion Coefficient for Transit
Diffusion Coefficient for Transit is the proportionality constant between the molar flux due to molecular diffusion and the negative value of the gradient in the concentration of the species.
Symbol: DC
Measurement: DiffusivityUnit: mm²/s
Note: Value can be positive or negative.
Archimedes' constant
Archimedes' constant is a mathematical constant that represents the ratio of the circumference of a circle to its diameter.
Symbol: π
Value: 3.14159265358979323846264338327950288

Other formulas in Femtochemistry category

​Go Bond Breakage Time
ζBB=(Lv)ln(4Eδ)
​Go Potential for Exponential Repulsion
V=E(sech(vt2L))2
​Go Recoil Energy for Bond Breaking
E=(12)μ(v2)
​Go Observed Lifetime Given Reduced Mass
τobs=μ[BoltZ]T8πPσ

How to Evaluate Transit Time from Center of Sphere?

Transit Time from Center of Sphere evaluator uses Transit Time = (Radius of Sphere for Transit^2)/((pi^2)*Diffusion Coefficient for Transit) to evaluate the Transit Time, The Transit Time from Center of Sphere formula is defined as time taken for electron to move from center of sphere to surface, taking into account the bulk electron diffusion coefficients. Transit Time is denoted by τD symbol.

How to evaluate Transit Time from Center of Sphere using this online evaluator? To use this online evaluator for Transit Time from Center of Sphere, enter Radius of Sphere for Transit (RD) & Diffusion Coefficient for Transit (DC) and hit the calculate button.

FAQs on Transit Time from Center of Sphere

What is the formula to find Transit Time from Center of Sphere?
The formula of Transit Time from Center of Sphere is expressed as Transit Time = (Radius of Sphere for Transit^2)/((pi^2)*Diffusion Coefficient for Transit). Here is an example- 6.3E+10 = (0.1^2)/((pi^2)*1.6E-05).
How to calculate Transit Time from Center of Sphere?
With Radius of Sphere for Transit (RD) & Diffusion Coefficient for Transit (DC) we can find Transit Time from Center of Sphere using the formula - Transit Time = (Radius of Sphere for Transit^2)/((pi^2)*Diffusion Coefficient for Transit). This formula also uses Archimedes' constant .
Can the Transit Time from Center of Sphere be negative?
Yes, the Transit Time from Center of Sphere, measured in Time can be negative.
Which unit is used to measure Transit Time from Center of Sphere?
Transit Time from Center of Sphere is usually measured using the Femtosecond[fs] for Time. Second[fs], Millisecond[fs], Microsecond[fs] are the few other units in which Transit Time from Center of Sphere can be measured.
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