Chapter 1 The Nature of Science and Physics
Chapter 1 The Nature of Science and Physics
Chapter 2 One-Dimensional Kinematics
Chapter 2 One-Dimensional Kinematics
Chapter 2 One-Dimensional Kinematics
Chapter 2 One-Dimensional Kinematics
Chapter 3 Two-Dimensional Kinematics
Chapter 3 Two-Dimensional Kinematics
Chapter 4 Dynamics: Force and Newton’s Laws of Motion
Chapter 4 Dynamics: Force and Newton’s Laws of Motion
Chapter 4 Dynamics: Force and Newton’s Laws of Motion
Chapter 5 Further Applications of Newton’s Laws: Friction, Drag and Elasticity
Chapter 5 Further Applications of Newton’s Laws: Friction, Drag and Elasticity
Chapter 6 Uniform Circular Motion and Gravitation
Chapter 6 Uniform Circular Motion and Gravitation
Chapter 7 Work, Energy, and Energy Resources
Chapter 7 Work, Energy, and Energy Resources
Chapter 7 Work, Energy, and Energy Resources
Chapter 7 Work, Energy, and Energy Resources
Chapter 7 Work, Energy, and Energy Resources
Chapter 8 Linear Momentum and Collisions
Chapter 8 Linear Momentum and Collisions
Chapter 8 Linear Momentum and Collisions
Chapter 8 Linear Momentum and Collisions
Chapter 9 Statics and Torque
Chapter 9 Statics and Torque
Chapter 9 Statics and Torque
Chapter 9 Statics and Torque
Chapter 10 Rotational Motion and Angular Momentum
Chapter 10 Rotational Motion and Angular Momentum
Chapter 10 Rotational Motion and Angular Momentum
Chapter 10 Rotational Motion and Angular Momentum
Chapter 10 Rotational Motion and Angular Momentum
Chapter 11 Fluid Statics
Chapter 11 Fluid Statics
Chapter 11 Fluid Statics
Chapter 11 Fluid Statics
Chapter 11 Fluid Statics
Chapter 12 Fluid Dynamics and Its Biological and Medical Applications
Chapter 12 Fluid Dynamics and Its Biological and Medical Applications
Chapter 12 Fluid Dynamics and Its Biological and Medical Applications
Chapter 12 Fluid Dynamics and Its Biological and Medical Applications
Chapter 12 Fluid Dynamics and Its Biological and Medical Applications
Chapter 12 Fluid Dynamics and Its Biological and Medical Applications
Chapter 13 Temperature, Kinetic Theory, and the Gas Laws
Chapter 14 Heat and Heat Transfer Methods
Chapter 14 Heat and Heat Transfer Methods
Chapter 14 Heat and Heat Transfer Methods
Chapter 14 Heat and Heat Transfer Methods
Chapter 14 Heat and Heat Transfer Methods
Chapter 15 Thermodynamics
Chapter 15 Thermodynamics
Chapter 15 Thermodynamics
Chapter 15 Thermodynamics
Chapter 15 Thermodynamics
Chapter 16 Oscillatory Motion and Waves
Chapter 16 Oscillatory Motion and Waves
Chapter 16 Oscillatory Motion and Waves
Chapter 16 Oscillatory Motion and Waves
Chapter 16 Oscillatory Motion and Waves
Chapter 17 Physics of Hearing
Chapter 17 Physics of Hearing
Chapter 17 Physics of Hearing
Chapter 17 Physics of Hearing
Chapter 17 Physics of Hearing
Chapter 17 Physics of Hearing
Chapter 18 Electric Charge and Electric Field
Chapter 18 Electric Charge and Electric Field
Chapter 18 Electric Charge and Electric Field
Chapter 18 Electric Charge and Electric Field
Chapter 18 Electric Charge and Electric Field
Chapter 19 Electric Potential and Electric Field
Chapter 19 Electric Potential and Electric Field
Chapter 19 Electric Potential and Electric Field
Chapter 20 Electric Current, Resistance, and Ohm’s Law
Chapter 20 Electric Current, Resistance, and Ohm’s Law
Chapter 20 Electric Current, Resistance, and Ohm’s Law
Chapter 20 Electric Current, Resistance, and Ohm’s Law
Chapter 20 Electric Current, Resistance, and Ohm’s Law
Chapter 20 Electric Current, Resistance, and Ohm’s Law
Chapter 21 Circuits and DC Instruments
Chapter 21 Circuits and DC Instruments
Chapter 21 Circuits and DC Instruments
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 22 Magnetism
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 23 Electromagnetic Induction, AC Circuits, and Electrical Technologies
Chapter 25 Geometric Optics
Chapter 25 Geometric Optics
Chapter 25 Geometric Optics
Chapter 25 Geometric Optics
Chapter 26 Vision and Optical Instruments
Chapter 26 Vision and Optical Instruments
Chapter 26 Vision and Optical Instruments
Chapter 26 Vision and Optical Instruments
Chapter 26 Vision and Optical Instruments
Chapter 26 Vision and Optical Instruments
Chapter 26 Vision and Optical Instruments
Chapter 27 Wave Optics
Chapter 27 Wave Optics
Chapter 27 Wave Optics
Chapter 27 Wave Optics
Chapter 27 Wave Optics
Chapter 27 Wave Optics
Chapter 27 Wave Optics
Chapter 28 Special Relativity
Chapter 28 Special Relativity
Chapter 28 Special Relativity
Chapter 28 Special Relativity
Chapter 28 Special Relativity
Chapter 29 Introduction to Quantum Physics
Chapter 29 Introduction to Quantum Physics
Chapter 29 Introduction to Quantum Physics
Chapter 30 Atomic Physics
Chapter 30 Atomic Physics
Chapter 30 Atomic Physics
Chapter 30 Atomic Physics
Chapter 30 Atomic Physics
Chapter 31 Radioactivity and Nuclear Physics
Chapter 31 Radioactivity and Nuclear Physics
Chapter 31 Radioactivity and Nuclear Physics
Chapter 31 Radioactivity and Nuclear Physics
Chapter 32 Medical Applications of Nuclear Physics
Chapter 32 Medical Applications of Nuclear Physics
Chapter 32 Medical Applications of Nuclear Physics
Chapter 32 Medical Applications of Nuclear Physics
Chapter 33 Particle Physics
Chapter 33 Particle Physics
Chapter 33 Particle Physics
Chapter 33 Particle Physics
Chapter 33 Particle Physics
Chapter 34 Frontiers of Physics
Chapter 34 Frontiers of Physics
Chapter 34 Frontiers of Physics
Chapter 34 Frontiers of Physics
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Chapter 9 Statics and Torque
Chapter 9 Statics and Torque
9.0 Introduction
What might desks, bridges, buildings, trees, and mountains have in common—at least in the eyes of a physicist? The answer is that they are ordinarily motionless relative to the Earth. Furthermore, their acceleration is zero because they remain motionless. That means they also have something in common with a car moving at a constant velocity, because anything with a constant velocity also has an acceleration of zero. Now, the important part—Newton’s second law states that net [latex]{F=ma},[/latex] and so the net external force is zero for all stationary objects and for all objects moving at constant velocity. There are forces acting, but they are balanced. That is, they are in equilibrium.
STATICS
Statics is the study of forces in equilibrium, a large group of situations that makes up a special case of Newton’s second law. We have already considered a few such situations; in this chapter, we cover the topic more thoroughly, including consideration of such possible effects as the rotation and deformation of an object by the forces acting on it.
How can we guarantee that a body is in equilibrium and what can we learn from systems that are in equilibrium? There are actually two conditions that must be satisfied to achieve equilibrium. These conditions are the topics of the first two sections of this chapter.