1 Introduction: The Nature Of Science And Physics 2 Kinematics 3 Two-dimensional Kinematics 4 Dynamics: Force And Newton's Laws Of Motion 5 Further Applications Of Newton's Laws: Friction, Drag, And Elasticity 6 Gravitation And Uniform Circular Motion 7 Work, Energy, And Energy Resources 8 Linear Momentum And Collisions 9 Statics And Torque 10 Rotational Motion And Angular Momentum 11 Fluid Statics 12 Fluid Dynamics And Its Biological And Medical Applications 13 Temperature, Kinetic Theory, And The Gas Laws 14 Heat And Heat Transfer Methods 15 Thermodynamics 16 Oscillatory Motion And Waves 17 Physics Of Hearing 18 Electric Charge And Electric Field 19 Electric Potential And Electric Field 20 Electric Current, Resistance, And Ohm's Law 21 Circuits, Bioelectricity, And Dc Instruments 22 Magnetism 23 Electromagnetic Induction, Ac Circuits, And Electrical Technologies 24 Electromagnetic Waves 25 Geometric Optics 26 Vision And Optical Instruments 27 Wave Optics 28 Special Relativity 29 Introduction To Quantum Physics 30 Atomic Physics 31 Radioactivity And Nuclear Physics 32 Medical Applications Of Nuclear Physics 33 Particle Physics 34 Frontiers Of Physics expand_more
Chapter Questions expand_more
Problem 1CQ: Define normal force. What is its relationship to friction when friction behaves simply? Problem 2CQ: The glue on a piece of tape can exert forces. Can these forces be a type of simple friction?... Problem 3CQ: When you learn to drive, you discover that you need to up slightly on the brake pedal as you come to... Problem 4CQ: When you push a piece of chalk across a chalkboard, it sometimes screeches because it rapidly... Problem 5CQ: Athletes such as swimmers and bicyclists wear body suits in competition. Formulate a list of pros... Problem 6CQ: Two expressions were used for the drag force experienced by a moving object a liquid. One depended... Problem 7CQ: As cars travel, oil and gasoline leaks onto the road surface. If a light rain falls, what does this... Problem 8CQ: Why can a squirrel jump from a tree branch to the ground and run away undamaged, while a human could... Problem 9CQ: The elastic properties of the arteries are essential for blood flow. Explain the importance of this... Problem 10CQ: What are you feeling when you feel your pulse? Measure your pulse rate for 10 s and for 1 min. Is... Problem 11CQ: Examine different types of shoes, including sports shoes and thongs. In terms of physics, why are... Problem 12CQ: Would you expect your height to be different depending upon the time of day? Why or why not? Problem 13CQ: Why can a squirrel from a tree branch to the ground and run away undamaged, while a human could... Problem 14CQ: Explain why pregnant women often suffer from back strain late in their pregnancy. Problem 15CQ: An old carpenter's trick to keep nails from bending when they are pounded into hard materials is to... Problem 16CQ: When a glass bottle full of vinegar warms up, both the vinegar and the glass expand, but vinegar... Problem 1PE: A physics major is cooking breakfast when he notices that the frictional force between his steel... Problem 2PE: (a) When rebuilding her car's engine, a physics major must exert 300 N of force to insert a dry... Problem 3PE: (a) What is the maximum frictional force in the knee joint of a person who supports 66.0 kg of her... Problem 4PE: Suppose you have a 120-kg wooden crate resting on a wood floor. (a) What maximum force can you exert... Problem 5PE: (a) If half of the weight of a small 1.00103 kg utility truck is supported by its two drive wheels,... Problem 6PE: A team of eight dogs pulls a sled with waxed wood runners on wet snow (mush!). The dogs have average... Problem 7PE: Consider the 65.0-kg ice skater being pushed by two others shown in Figure 5.21. (a) Find the... Problem 8PE: Show that the acceleration of any object down a frictionless incline that makes an angle with the... Problem 9PE: Show that the acceleration of any object down an incline where friction behaves simply (that is,... Problem 10PE: Calculate the deceleration of a snow boarder going up a 5.0°, slope assuming the coefficient of... Problem 11PE: (a) Calculate the acceleration of a skier heading down a 10.0° slope, assuming the coefficient of... Problem 12PE: If an object is to rest on an incline without slipping, then friction must equal the component of... Problem 13PE: Calculate the maximum deceleration of a car that is heading down a 6° slope (one that makes an angle... Problem 14PE: Calculate the maximum acceleration of a car that is heading up a 4° slope (one that makes an angle... Problem 15PE: Repeat Exercise 5.14 for a car with four-wheel drive. Problem 16PE: A freight train consists of two 8.00105 -kg engines and 45 cars with average masses of 5.50105 kg.... Problem 17PE: Consider the 52.0-kg mountain climber in Figure 5.22. (a) Find the tension in the rope and the force... Problem 18PE: A contestant in a winter sporting event pushes a 45.0-kg block of ice across a frozen lake as shown... Problem 19PE: Repeat Exercise 5.18 with the contestant pulling the block of ice with a rope over his shoulder at... Problem 20PE: The terminal velocity of a person falling in air depends upon the weight and the area of the person... Problem 21PE: A 60-kg and a go-kg skydiver jump from an airplane at an altitude of 6000 m, both falling in the... Problem 22PE: A 560-g squirrel with a surface area of 930 cm2 falls from a 5.0-m tree to the ground. Estimate its... Problem 23PE: To maintain a constant speed, the force provided by a car's engine must equal the drag force plus... Problem 24PE: By what factor does the drag force on a car increase as it goes from 65 to 110 km/h? Problem 25PE: Calculate the speed a spherical rain drop would achieve falling from 5.00 km (a) in the absence of... Problem 26PE: Using Stokes' law, verify that the units for viscosity are kilograms per meter per second. Problem 27PE: Find the terminal velocity of a spherical bacterium (diameter 2.00 pm) falling in water. You will... Problem 28PE: Stokes' law describes sedimentation of particles in liquids and can be used to measure viscosity.... Problem 29PE: During a circus act, one performer swings upside down hanging from a trapeze holding another, also... Problem 30PE: During a wrestling match, a 150 kg wrestler briefly stands on one hand during a maneuver designed to... Problem 31PE: (a) The "lead" in pencils is a graphite composition with a Young's modulus of about 1109 N/ m2.... Problem 32PE: TV broadcast antennas are the tallest artificial structures on Earth. In 1987, a 72.0-kg physicist... Problem 33PE: (a) By how much does a 65.0-kg mountain climber stretch her 0.800-cm diameter nylon rope when she... Problem 34PE: A 20.0-m tall hollow aluminum flagpole is equivalent in stiffness to a solid cylinder 4.00 cm in... Problem 35PE: As an oil well is drilled, each new section of drill pipe supports its own weight and that of the... Problem 36PE: Calculate the force a piano tuner applies to stretch a steel piano wire 8.00 mm, if the wire is... Problem 37PE: A vertebra is subjected to a shearing force of 500 N. Find the shear deformation, taking the... Problem 38PE: A disk between vertebrae in the spine is subjected to a shearing force of 600 N. Find its shear... Problem 39PE: When using a pencil eraser, you exert a vertical force of 6.00 N at a distance of 2.00 cm from the... Problem 40PE: To consider the effect of wires hung on poles, we take data from Example 4.8, in which tensions in... Problem 41PE: A farmer making grape juice fills a glass bottle to the brim and caps it tightly. The juice expands... Problem 42PE: (a) When water freezes, its volume increases by 9.05% (that is, V/V0=9.05102 ). What force per unit... Problem 43PE: This problem returns to the tightrope walker studied in Example 4.6, who created a tension of... Problem 44PE: The pole in Figure 5.24 is at a 90.0° bend in a power line and is therefore subjected to more shear... Problem 1TP Problem 2TP Problem 3TP Problem 4TP format_list_bulleted