Angular Speed of Earth for given Coriolis Frequency Formula

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Angular Speed of the Earth is the measure of how fast the central angle of a rotating body changes with respect to time. Check FAQs
ΩE=f2sin(λe)
ΩE - Angular Speed of the Earth?f - Coriolis Frequency?λe - Earth Station Latitude?

Angular Speed of Earth for given Coriolis Frequency Example

With values
With units
Only example

Here is how the Angular Speed of Earth for given Coriolis Frequency equation looks like with Values.

Here is how the Angular Speed of Earth for given Coriolis Frequency equation looks like with Units.

Here is how the Angular Speed of Earth for given Coriolis Frequency equation looks like.

7.3E-5Edit=0.0001Edit2sin(43.29Edit)
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Angular Speed of Earth for given Coriolis Frequency Solution

Follow our step by step solution on how to calculate Angular Speed of Earth for given Coriolis Frequency?

FIRST Step Consider the formula
ΩE=f2sin(λe)
Next Step Substitute values of Variables
ΩE=0.00012sin(43.29°)
Next Step Convert Units
ΩE=0.00012sin(0.7556rad)
Next Step Prepare to Evaluate
ΩE=0.00012sin(0.7556)
Next Step Evaluate
ΩE=7.29191086179587E-05rad/s
LAST Step Rounding Answer
ΩE=7.3E-5rad/s

Angular Speed of Earth for given Coriolis Frequency Formula Elements

Variables
Functions
Angular Speed of the Earth
Angular Speed of the Earth is the measure of how fast the central angle of a rotating body changes with respect to time.
Symbol: ΩE
Measurement: Angular VelocityUnit: rad/s
Note: Value should be greater than 0.
Coriolis Frequency
Coriolis Frequency also called the coriolis parameter or coriolis coefficient, is equal to twice the rotation rate Ω of the earth multiplied by the sine of the latitude φ.
Symbol: f
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Earth Station Latitude
Earth Station latitude is the coordinates of earth-station.
Symbol: λe
Measurement: AngleUnit: °
Note: Value should be greater than 0.
sin
Sine is a trigonometric function that describes the ratio of the length of the opposite side of a right triangle to the length of the hypotenuse.
Syntax: sin(Angle)

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How to Evaluate Angular Speed of Earth for given Coriolis Frequency?

Angular Speed of Earth for given Coriolis Frequency evaluator uses Angular Speed of the Earth = Coriolis Frequency/(2*sin(Earth Station Latitude)) to evaluate the Angular Speed of the Earth, The Angular Speed of Earth for given Coriolis Frequency formula is defined as the measure of how fast the central angle of a rotating body changes with respect to time. Angular Speed of the Earth is denoted by ΩE symbol.

How to evaluate Angular Speed of Earth for given Coriolis Frequency using this online evaluator? To use this online evaluator for Angular Speed of Earth for given Coriolis Frequency, enter Coriolis Frequency (f) & Earth Station Latitude e) and hit the calculate button.

FAQs on Angular Speed of Earth for given Coriolis Frequency

What is the formula to find Angular Speed of Earth for given Coriolis Frequency?
The formula of Angular Speed of Earth for given Coriolis Frequency is expressed as Angular Speed of the Earth = Coriolis Frequency/(2*sin(Earth Station Latitude)). Here is an example- 7.3E-5 = 0.0001/(2*sin(0.755553033188203)).
How to calculate Angular Speed of Earth for given Coriolis Frequency?
With Coriolis Frequency (f) & Earth Station Latitude e) we can find Angular Speed of Earth for given Coriolis Frequency using the formula - Angular Speed of the Earth = Coriolis Frequency/(2*sin(Earth Station Latitude)). This formula also uses Sine (sin) function(s).
Can the Angular Speed of Earth for given Coriolis Frequency be negative?
No, the Angular Speed of Earth for given Coriolis Frequency, measured in Angular Velocity cannot be negative.
Which unit is used to measure Angular Speed of Earth for given Coriolis Frequency?
Angular Speed of Earth for given Coriolis Frequency is usually measured using the Radian per Second[rad/s] for Angular Velocity. Radian per Day[rad/s], Radian per Hour[rad/s], Radian per Minute[rad/s] are the few other units in which Angular Speed of Earth for given Coriolis Frequency can be measured.
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