Kinematic Equations for Uniform Motion

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Kinematic Equations for Uniform Motion: Overview

This Topic covers sub-topics such as Types of Motion, Kinetics, Triangle Law of Velocities, Polygon of Velocities, Parallelogram Law of Velocities, Resultant of Simultaneous Coplanar Velocities and, Resultant of Two Velocities

Important Questions on Kinematic Equations for Uniform Motion

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Find the resultant of two equal velocities of 90 m s-1 inclined at an angle 60°.

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If the resultant of two simultaneous velocities of 30 m s-1 and 60 m s-1 is perpendicular to the smaller velocity, find the angle between them and their resultant velocity.

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Find the resultant of two equal velocities of 60 m s-1 inclined at an angle 120° with the axis.

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Two coplanar velocity vectors A=5 units, B=10 units

 and an angle of 30° with the X-axis. Find the resultant velocity vector.

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What are the different methods to find resultant of coplanar velocities?

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A force of 6 N acts on a particle along a direction making an angle of 45° with vertical. Its horizontal component is

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A force of 6 N acts on a particle along a direction making an angle of 30° with vertical. Its horizontal component is

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Find the angle between two velocity vectors a and b and the resultant velocity vector is c, such that, a=b=c

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Find the resultant velocity of the perpendicular components with magnitude 53 m s-1  in horizontal direction and the magnitude of the vertical component is 5 m s-1.

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A force of 10 N is resolved into the perpendicular components. If the first component make 30° with the force, the magnitude of the components are

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In mechanics, the study of bodies which are in motion is known as _____.

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Kinetics is the branch of mechanics which studies about the bodies in rest.

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Differentiate between kinetics and statics.

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What do you mean by kinetics?

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Explain the relation between polygon law of velocities and triangular law of velocities.

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A force of 5 N acts on a particle along a direction making an angle of 60° with vertical. Its vertical component is

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Explain polygon law of velocities.

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The polygon law of velocities is just an extension of parallelogram law of velocities.

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The polygon law of velocities is just an extension of ______.

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Explain resolution of vectors into two perpendicular components.