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Mean Free Tunneling Time is duration of events or the intervals between them when an object such as an electron or atom passes through a potential energy barrier. Check FAQs
Te=1ve
Te - Mean Free Tunneling Time?ve - Mean Electron Velocity?

Mean Free Tunneling Time Given Velocity Example

With values
With units
Only example

Here is how the Mean Free Tunneling Time Given Velocity equation looks like with Values.

Here is how the Mean Free Tunneling Time Given Velocity equation looks like with Units.

Here is how the Mean Free Tunneling Time Given Velocity equation looks like.

4.5E-7Edit=12.2E+6Edit
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Mean Free Tunneling Time Given Velocity Solution

Follow our step by step solution on how to calculate Mean Free Tunneling Time Given Velocity?

FIRST Step Consider the formula
Te=1ve
Next Step Substitute values of Variables
Te=12.2E+6m/s
Next Step Prepare to Evaluate
Te=12.2E+6
Next Step Evaluate
Te=4.54545454545455E-22s
Next Step Convert to Output's Unit
Te=4.54545454545455E-07fs
LAST Step Rounding Answer
Te=4.5E-7fs

Mean Free Tunneling Time Given Velocity Formula Elements

Variables
Mean Free Tunneling Time
Mean Free Tunneling Time is duration of events or the intervals between them when an object such as an electron or atom passes through a potential energy barrier.
Symbol: Te
Measurement: TimeUnit: fs
Note: Value can be positive or negative.
Mean Electron Velocity
Mean Electron Velocity is the speed of electron in combination with the direction of motion of an object.
Symbol: ve
Measurement: SpeedUnit: m/s
Note: Value can be positive or negative.

Other Formulas to find Mean Free Tunneling Time

​Go Mean Free Tunneling Time for Electron
Te=IP2[Mass-e]FBSI

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 Mean Free Tunneling Time Given Velocity?

Mean Free Tunneling Time Given Velocity evaluator uses Mean Free Tunneling Time = 1/Mean Electron Velocity to evaluate the Mean Free Tunneling Time, The Mean Free Tunneling Time Given Velocity formula is defined as time required for an electron to pass through a potential energy barrier. In order for the electron to escape, the mean tunneling time must be less than one half the period of the laser frequency. Mean Free Tunneling Time is denoted by Te symbol.

How to evaluate Mean Free Tunneling Time Given Velocity using this online evaluator? To use this online evaluator for Mean Free Tunneling Time Given Velocity, enter Mean Electron Velocity (ve) and hit the calculate button.

FAQs on Mean Free Tunneling Time Given Velocity

What is the formula to find Mean Free Tunneling Time Given Velocity?
The formula of Mean Free Tunneling Time Given Velocity is expressed as Mean Free Tunneling Time = 1/Mean Electron Velocity. Here is an example- 4.5E+23 = 1/2200000.
How to calculate Mean Free Tunneling Time Given Velocity?
With Mean Electron Velocity (ve) we can find Mean Free Tunneling Time Given Velocity using the formula - Mean Free Tunneling Time = 1/Mean Electron Velocity.
What are the other ways to Calculate Mean Free Tunneling Time?
Here are the different ways to Calculate Mean Free Tunneling Time-
  • Mean Free Tunneling Time=(sqrt(Ionization Potential Barrier Suppression/(2*[Mass-e])))/Field Strength for Barrier Suppression IonizationOpenImg
Can the Mean Free Tunneling Time Given Velocity be negative?
Yes, the Mean Free Tunneling Time Given Velocity, measured in Time can be negative.
Which unit is used to measure Mean Free Tunneling Time Given Velocity?
Mean Free Tunneling Time Given Velocity is usually measured using the Femtosecond[fs] for Time. Second[fs], Millisecond[fs], Microsecond[fs] are the few other units in which Mean Free Tunneling Time Given Velocity can be measured.
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