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INTRODUCTION & RECTILINEAR KINEMATICS: CONTINUOUS MOTION (Sections 12.1 - 12.2)

INTRODUCTION & RECTILINEAR KINEMATICS: CONTINUOUS MOTION (Sections 12.1 - 12.2)

INTRODUCTION & RECTILINEAR KINEMATICS: CONTINUOUS MOTION (Sections 12.1 - 12.2). Today’s Objectives : Students will be able to find the kinematic quantities (position, displacement, velocity, and acceleration) of a particle traveling along a straight path. In-Class Activities :

By macy
(320 views)

Newtons First & Second Laws

Newtons First & Second Laws

Newtons First & Second Laws. by: Nayeli and Walter. Newtons First Law. describes motion produced by balanced forces.

By neal
(210 views)

Newtons First Law Newtons Second Law Newtons Third Law F=ma F= μmg F= μma F NET = F 1 + F 2 + F 3 … F fr F drag F

Newtons First Law Newtons Second Law Newtons Third Law F=ma F= μmg F= μma F NET = F 1 + F 2 + F 3 … F fr F drag F

Newtons First Law Newtons Second Law Newtons Third Law F=ma F= μmg F= μma F NET = F 1 + F 2 + F 3 … F fr F drag F app Force Tension Gravity Acceleration Coefficient of Drag/Friction. Gravitation & Kepler’s Laws. Kepler’s Laws.

By rosie
(199 views)

Forces and Motion

Forces and Motion

Forces and Motion. By Deena Jarwan , Abby Haugh , and Brandy Ordaz , Cade Shuck. Force. What is Force?

By uriah
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CHAPTER-11

CHAPTER-11

CHAPTER-11. Rolling, Torque, and Angular Momentum. Ch 11-2 Rolling as Translational and Rotation Combined. Rolling Motion Rotation of a rigid body about an axis not fixed in space Smooth Rolling: Rolling motion without slipping Motion of com “O” and point “P”

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Newtons Second Law

Newtons Second Law

Newtons Second Law. Unit 6.4. 2 nd law. An object will accelerate if an unbalanced force is applied to it. Its acceleration will depend on the size of the force and the mass of the object. The relationship between force, mass and acceleration can be shown in the following equations.

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Newtons’ 1 st Law

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