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How do you determine radius of turn? - Answers

The radius of turn can be determined using the formula ( R = \frac{V^2}{g \cdot \tan(\theta)} ), where ( R ) is the radius, ( V ) is the velocity of the object, ( g ) is the acceleration due to gravity, and ( \theta ) is the angle of bank for an aircraft or vehicle. Alternatively, for circular motion, the radius can also be calculated using the centripetal acceleration formula ( a_c = \frac{V^2}{R} ). By rearranging this formula, you can solve for ( R ) if you know the velocity and the centripetal acceleration. In practical applications, you may also measure the turning path directly or use GPS data for more precise calculations.



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How do you determine radius of turn? - Answers

https://math.answers.com/math-and-arithmetic/How_do_you_determine_radius_of_turn

The radius of turn can be determined using the formula ( R = \frac{V^2}{g \cdot \tan(\theta)} ), where ( R ) is the radius, ( V ) is the velocity of the object, ( g ) is the acceleration due to gravity, and ( \theta ) is the angle of bank for an aircraft or vehicle. Alternatively, for circular motion, the radius can also be calculated using the centripetal acceleration formula ( a_c = \frac{V^2}{R} ). By rearranging this formula, you can solve for ( R ) if you know the velocity and the centripetal acceleration. In practical applications, you may also measure the turning path directly or use GPS data for more precise calculations.



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https://math.answers.com/math-and-arithmetic/How_do_you_determine_radius_of_turn

How do you determine radius of turn? - Answers

The radius of turn can be determined using the formula ( R = \frac{V^2}{g \cdot \tan(\theta)} ), where ( R ) is the radius, ( V ) is the velocity of the object, ( g ) is the acceleration due to gravity, and ( \theta ) is the angle of bank for an aircraft or vehicle. Alternatively, for circular motion, the radius can also be calculated using the centripetal acceleration formula ( a_c = \frac{V^2}{R} ). By rearranging this formula, you can solve for ( R ) if you know the velocity and the centripetal acceleration. In practical applications, you may also measure the turning path directly or use GPS data for more precise calculations.

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      The radius of turn can be determined using the formula ( R = \frac{V^2}{g \cdot \tan(\theta)} ), where ( R ) is the radius, ( V ) is the velocity of the object, ( g ) is the acceleration due to gravity, and ( \theta ) is the angle of bank for an aircraft or vehicle. Alternatively, for circular motion, the radius can also be calculated using the centripetal acceleration formula ( a_c = \frac{V^2}{R} ). By rearranging this formula, you can solve for ( R ) if you know the velocity and the centripetal acceleration. In practical applications, you may also measure the turning path directly or use GPS data for more precise calculations.
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