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The tangential **velocity** : **Centripetal force** is **directly proportional** to square of the tangential **velocity** at constant radius of circular path and object mass. Slope = F / v² = m / r F = m v² / r. ... Feb 20, 2022 · This implies that for a given mass and **velocity**, a large **centripetal force** causes a small radius of curvature—that is, a tight.

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What **is Centripetal** Acceleration? For a moving body traversing a circular path, the acceleration produced by a **centripetal force** is called **centripetal** acceleration and is denoted by “a c “. It is **directly proportional** to the square of the **velocity** of the body and inversely **proportional** to the radius of the circle. The direction of this acceleration is radially towards the center of the circle.

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Equating the two expressions for **centripetal** **force**, No, both cannot be accelerated to same frequency because frequency depends upon mass and charge. (ii) **Velocity** **is** given by the formula v = \(\frac{B q r}{m}\) **Velocity** **is** also inversely **proportional** **to** mass and **directly** **proportional** **to** charge **Velocity** of proton is higher than that α-particle. The magnitude of the **centripetal** **force** **is** equal to the magnitude of the centrifugal **force** .So each one of **centripetal** **force** as well as the centrifugal **force** must do equal amount of work .But here **centripetal** **force** does more work than the centrifugal **force**, this implies that some amount of centrifugal. The tangential **velocity** : **Centripetal force** is **directly proportional** to square of the tangential **velocity** at constant radius of circular path and object mass . Slope = F / v² = m / r F = m v² / r. "/>. If a body is required to move along a circular path, a **force** known as **centripetal** **force** has **to** be applied. In the motion of satellites around the Earth, the **centripetal** **force** **is** provided by the. The **centripetal** **force** will change the **velocity** of the object, but it won't make it go any faster - so it won't transfer energy to the object. ... Acceleration is **directly** **proportional** **to** **force**.

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This formula is: acceleration = **force**/mass or a = F/m Constant Acceleration When an object is changing **velocity** by a constant amount over time, this is called constant <b>acceleration. That is, the **centripetal force** is always **directly proportional** to the displacement of the object. E.g.:- A satellite orbiting a planet Calculating the. Such a **force** **is** called the **centripetal** **force**. The reaction of this **force** **is** called centrifugal **force**. This means that both these **forces** are equal and opposite in direction. **Centripetal** **force** and its applications. **Centripetal** **force** **is** the **force** acting on an object in curvilinear motion directed toward the axis of rotation or centre of curvature. Such a **force** **is** called the **centripetal** **force**. The reaction of this **force** **is** called centrifugal **force**. This means that both these **forces** are equal and opposite in direction. **Centripetal** **force** and its applications. **Centripetal** **force** **is** the **force** acting on an object in curvilinear motion directed toward the axis of rotation or centre of curvature. Theoretically, the **centripetal force** should be **directly proportional** to the square of the speed. To check this, add a column to your data table for v 2. Construct a graph of **centripetal force** versus v 2. Remember that it is customary to put the quantity you change (**force**, in this case) on the horizontal axis, and the quantity that changes by. Theoretically, the **centripetal** **force** should be **directly** **proportional** **to** the square of the speed. In order to check this, a column "v2" will be added to one of our data tables. When we do that the uncertainties on "V" must be squared. We will also display a column indicating the **centripetal** **force**.

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The **force** acting between the Sun and the Earth. The **force** that is responsible for the revolution to the Moon around the Earth. The tides that are caused in the ocean is due to the **force** from the Moon. The **force** that is holding all the gases in the Sun. The **force** that is acting on us making us walk on the ground and not float in the air.

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1 Answer Sorted by: 1 Both are correct. They are equivalent. In constant circular motion **velocity** v, radius r and frequency f are related by v = 2 π r f. And therefore is m v 2 r = 4 π 2 r m f 2. Share Improve this answer answered Mar 8, 2020 at 18:38 Thomas Fritsch 27.4k 11 61 92 Add a comment.

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