1. Physics and Measurement. 2
Standards of Length, Mass, and Time.
Matter and Model Building.
Density and Atomic Mass.
Dimensional Analysis.
Conversion of Units.
Estimates and Order-of-Magnitude Calculations.
Significant Figures.
2. Motion in One Dimension 23
Position, Velocity, and Speed.
Instantaneous Velocity and Speed.
Acceleration.
Motion Diagrams.
One-Dimensional Motion with Constant Acceleration.
Freely Falling Objects.
Kinematic Equations Derived from Calculus.
General Problem-Solving Strategy.
3. Vectors. 58
Coordinate Systems.
Vector and Scalar Quantities.
Some Properties of Vectors.
Components of a Vector and Unit Vectors.
4. Motion in Two Dimensions 77
The Position, Velocity, and Acceleration Vectors.
Two-Dimensional Motion with Constant Acceleration.
Projectile Motion.
Uniform Circular Motion.
Tangential and Radial Acceleration.
Relative Velocity and Relative Acceleration.
1. Physics and Measurement. 2Standards of Length, Mass, and Time.Matter and Model Building.Density and Atomic Mass.Dimensional Analysis.Conversion of Units.Estimates and Order-of-Magnitude Calculations.Significant Figures.2. Motion in One Dimension 23Position, Velocity, and Speed.Instantaneous Velocity and Speed.Acceleration.Motion Diagrams.One-Dimensional Motion with Constant Acceleration.Freely Falling Objects.Kinematic Equations Derived from Calculus.General Problem-Solving Strategy.3. Vectors. 58Coordinate Systems.Vector and Scalar Quantities.Some Properties of Vectors.Components of a Vector and Unit Vectors.4. Motion in Two Dimensions 77The Position, Velocity, and Acceleration Vectors.Two-Dimensional Motion with Constant Acceleration.Projectile Motion.Uniform Circular Motion.Tangential and Radial Acceleration.Relative Velocity and Relative Acceleration.
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