Kinematic equations of motion

    • [DOC File]IB Physics SL

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      (Hint: kinematic equations) 12. Two forces are applied to a car in an effort to move it, as shown in Figure P4.12. (a) What is the resultant of these two forces? (b) If the car has a mass of 3 000 kg, what acceleration does it have? Ignore friction. ANSWERS. Quick Quizzes. 1. (a) True. Motion …

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    • [DOCX File]Practice Test – Kinematic Equations

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      Description of motion. Direction of velocity. Direction of acceleration. Object thrown upward. Object falling downward. Highest point of on object thrown into the air. Object returning (on its way down) to the same level at which it was thrown up. Author: Owner Created Date: 10/03/2012 04:07:00 Title: Practice Test – Kinematic Equations

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    • [DOCX File]02 - Motion

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      Kinematic equations can take three of the suvat variables to solve for the remaining two. Vector quantities can be combined to find resultant vectors or divided into their component parts. X and Y motion are independent of each other for a two-dimensional projectile. Content Objectives. 2.1 – Velocity:

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    • [DOC File]MOTION PROBLEMS - Kinematics 10-03-95

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      The principal kinematic equations become particularly simple if the initial speed is zero. Write down the equations for this special case. (Also put x0 = 0.) A car accelerated from 12 m/s to 25 m/s in 5.0 s. What was its acceleration? How far did it travel in this time? Assume constant acceleration.

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    • [DOC File]Chapter 2

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      The kinematic equations are the equations of motion which relate these quantities to each other. These equations assume that the acceleration . of an object is uniform, that is, constant for the time interval we are interested in. The kinematic equations listed below would not work for calculating velocities and displacements for an object ...

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    • [DOC File]A Brief Synopsis of Kane’s Method and a few Applications

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      Essentially all methods for obtaining equations of motion are equivalent. However, the ease of use of the various methods differs; some are more suited for multibody dynamics than others. The Newton-Euler method is comprehensive in that a complete solution for all the forces and kinematic variables are obtained, but it is inefficient.

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    • [DOC File]Lab #8: The Kinematics & Dynamics of Circular & Rotational ...

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      Linear motion is the most basic form, involving the translation of a particle from one point to another in one dimension. Projectile motion, although two-dimensional, is easily analyzed by separating it into its linear components. Circular motion is a special case of two-dimensional motion in which an object translates in a circular path.

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    • [DOC File]Kinematics – study of the motion of objects using words ...

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      – study of the motion of objects using words, diagrams, numbers, graphs, and equations. Language of Kinematics: Scalars. a quantity having magnitude (or numerical value) and unit only. Vectors. a quantity having both a magnitude, unit and a direction. (has arrow …

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    • [DOC File]Kinematic Equations and Problem Solving

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      The four kinematic equations which describe the mathematical relationship between the parameters which describe an object's motion are as follows: In the above equations, the symbol . d. stands for the . displacement. of the object. The symbol . t. stands for the . time. for which the object moved. The symbol . a. stands for the . acceleration ...

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    • [DOC File]Chapter 3

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      Since the two-dimensional motion described in this chapter involves only constant accelerations, we may use the kinematic equations. The content contained in sections 1, 2, 3, and 5 of chapter 3 of the textbook is included on the AP Physics B exam.

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