Solutions for PHY F/SCIENTIST MOD MASTERING 24 MO
Problem 2CQ:
If the angular velocity w is held constant, by what factor must R change to double the rotational...Problem 3CQ:
FIGURE Q12.3 shows three rotating disks, all of equal mass. Rank in order, from largest to smallest,...Problem 5CQ:
5. The moment of inertia of a uniform rod about an axis through its center is mL2. The moment of...Problem 6CQ:
6. You have two solid steel spheres. Sphere 2 has twice the radius of sphere 1. By what factor does...Problem 7CQ:
The professor hands you two spheres. They have the same mass. the same radius, and the same exterior...Problem 8CQ:
Six forces are applied to the door in FIGURE Q12.8. Rank in order, from largest to smallest, the six...Problem 10CQ:
Rank in order, from largest to smallest, the angular accelerations aato adin FIGURE Q 12.10....Problem 11CQ:
The solid cylinder and cylindrical shell in FIGURE Q12.11 have the same mass, same radius, and turn...Problem 12CQ:
A diver in the pike position (legs straight, hands on ankles) usually makes only one or...Problem 1EAP:
A high-speed drill reaches 2000 rpm in 0.50 s. a. What is the drills angular acceleration? b....Problem 2EAP:
A skater holds her arms outstretched as she spins at 180 rpm. What is the speed of her hands if they...Problem 3EAP:
A ceiling fan with 80-cm-diameter blades is turning at 60 rpm. Suppose the fan coasts to a stop 25 s...Problem 4EAP:
An 18-cm-long bicycle crank arm, with a pedal at one end. is attached to a 20-cm-diameter sprocket,...Problem 6EAP:
The three masses shown in FIGURE EX12.6 are connected by massless, rigid rods. What are the...Problem 7EAP:
The three masses shown in FIGURE EX12.7 are connected by massless, rigid rods. What are the...Problem 8EAP:
A 100 g ball and a 200 g ball are connected by a 30-cm-long. massless, rigid rod. The halls rotate...Problem 9EAP:
A thin, 100 g disk with a diameter of 8.0 cm rotates about an axis through its center with 0.15 J of...Problem 10EAP:
What is the rotational kinetic energy of the earth? Assume the earth is a uniform sphere. Data for...Problem 11EAP:
The three200g masses in FIGURE EX12.11 are connected by massless, rigid rods. a. What is the...Problem 12EAP:
A drum major twirls a 96-cm-long, 400 g baton about its center of mass at 100 rpm. What is the...Problem 13EAP:
The four masses shown in FIGURE EX12.13 are connected by massless, rigid rods. a. Find the...Problem 14EAP:
The four masses shown in FIGURE EXI2.13 are connected by massless. rigid rods. a. Find the...Problem 15EAP:
The three masses shown in FIGURE EXI2.15 are connected by massless, rigid rods. a. Find the...Problem 16EAP:
A 12-cm-diameter CD has a mass of 21 g. What is the CD’s moment of inertia for rotation about a...Problem 17EAP:
A 25 kg solid door is 220 cm tall, 91 cm wide. What is the door’s moment of inertia for (a) rotation...Problem 20EAP:
The 20-cm-diameter disk in FIGURE EX12.20 can rotate on an axle through its center. What is the net...Problem 21EAP:
The axle in FIGURE EXI2.21 is half the distance from the center to the rim. What is the net torque...Problem 22EAP:
A 4.0-rn-long, 500 kg steel beam extends horizontally from the point where it has been bolted to the...Problem 23EAP:
An athlete at the gym holds a 3.0 kg steel ball in his hand. His arm is 70 cm long and has a mass of...Problem 24EAP:
An object’s moment of inertia is 2.0 kg m2. Its angular velocity is increasing at the rate of 4.0...Problem 25EAP:
An object whose moment of inertia is 4.0 kg m2 experiences the torque shown in FIGURE EX12.25. What...Problem 26EAP:
A 1.0 kg ball and a 2.0 kg ball are connected by a 1.0-m-long rigid, massless rod. The rod is...Problem 27EAP:
Starting from rest, a 12-cm-diameter compact disk takes 3.0 s to reach its operating angular...Problem 28EAP:
A 4.0 kg, 36-cm-diameter metal disk, initially at rest, can rotate on an axle along its axis. A...Problem 31EAP:
The 3.0-rn-long, 100 kg rigid beam of FIGURE EX12.31 is supported at each end. An 80 kg student...Problem 32EAP:
A 5.0 kg cat and a 2.0 kg bowl of tuna fish are at opposite ends of the 4.0-rn-long seesaw of FIGURE...Problem 33EAP:
A car tire is 60cm in diameter. The car is traveling at a speed of 20 m/s. a. What is the tires...Problem 34EAP:
A 500 g, 8.0-cm-diameter can is filled with uniform, dense food. It rolls across the floor at 1.0...Problem 36EAP:
A solid sphere of radius R is placed at a height of 30 cm on a 15° slope. It is released and rolls,...Problem 38EAP:
Evaluate the cross products AB and CD .Problem 40EAP:
Force F=10j N is exerted on a particle at 5i+5j m. What is the torque on the particle about the...Problem 41EAP:
A 1.3 kg ball on the end of a lightweight rod is located at (x, y) = (3.0 m, 2.0 m), where the...Problem 42EAP:
What are the magnitude and direction of the angular momentum relative to the origin of the 200 g...Problem 43EAP:
What is the angular momentum vector of the 2.0 kg, 4.0-cm-diameter rotating disk in FIGURE EX12.43?Problem 46EAP:
A 2.0 kg, 20-cm-diameter turntable rotates at 100 rpm on frictionless bearings. Two 500 g blocks...Problem 48EAP:
A toy gyroscope has a ring of mass M and radius R attached to the axle by lightweight spokes. The...Problem 52EAP:
What is the moment of inertia of a 2.0 kg, 20-cm-diameter disk for rotation about an axis (a)...Problem 53EAP:
Calculate by direct integration the moment of inertia for a thin rod of mass M and length L about an...Problem 54EAP:
Calculate the moment of inertia of the rectangular plate in FIGURE P12.54 for rotation about a...Problem 55EAP:
a. A disk of mass M and radius R has a hole of radius r centered on the axis. Calculate the moment...Problem 56EAP:
Consider a solid cone of radius R, height H, and mass M. The (AIX volume of a cone is 13HR2. a. What...Problem 58EAP:
A 3.0-m-long ladder, as shown in Figure 12.35. leans against a frictionless wall. The coefficient of...Problem 59EAP:
In FIGURE P12.59, an 80 kg construction worker sits down 2.0 m from the end of a 1450 kg steel beam...Problem 62EAP:
A 120-cm-wide sign hangs from a 5.0 kg, 200-cm-long pole. A cable of negligible mass supports the...Problem 64EAP:
Flywheels are large, massive wheels used to store energy. They can be spun up slowly, then the...Problem 65EAP:
of mass m1and m2are connected by a massless string that passes over the pulley in FIGURE P12.65. The...Problem 66EAP:
The 2.0 kg, 30-cm-diameter disk in FIGURE P12.66 is spinning at 300 rpm. How much friction force...Problem 67EAP:
A 30-cm-diameter, 1.2 kg solid turntable rotates on a 1.2-cm-diameter, 450 g shaft at a constant 33...Problem 68EAP:
Your engineering team has been assigned the task of measuring the properties of a new jet-engine...Problem 69EAP:
A hollow sphere is rolling along a horizontal floor at 5.0 m/s when it comes to a 30° incline. How...Problem 70EAP:
A 750 g disk and a 760 g ring, both 15 cm in diameter, are rolling along a horizontal surface at 1.5...Problem 71EAP:
A cylinder of radius R, length L. and mass M is released from rest on a slope inclined at angle ....Problem 72EAP:
The 5.0 kg, 60-cm-diameter disk in FIGURE P12.72 rotates on an axle passing through one edge. The...Problem 73EAP:
A thin, uniform rod of length L and mass M is placed vertically on a horizontal table. If tilted...Problem 74EAP:
A long, thin rod of mass M and length L is standing straight up on a table. Its lower end rotates on...Problem 75EAP:
The marble rolls down the track shown in FIGURE P12.75 and around a loop-the-loop of radius R. The...Problem 76EAP:
sThe sphere of mass M and radius R in FIGURE P12.76 is rigidly attached to a thin rod of radius r...Problem 77EAP:
A satellite follows the elliptical orbit shown in FIGURE P12.77. The only force on the satellite is...Problem 78EAP:
A 10 g bullet traveling at 400 m/s strikes a 10 kg, 1.0-m-wide door at the edge opposite the hinge....Problem 79EAP:
A 200 g, 40-cm-diameter turntable rotates on frictionless bearings at 60 rpm. A 20 g block sits at...Problem 80EAP:
Luc, who is 1.80 m tall and weighs 950 N, is standing at the center of a playground merry-go-round...Problem 81EAP:
A merry-go-round is a common piece of playground equipment. A 3.0-m-diameter merry-go-round with a...Problem 82EAP:
A 45 kg figure skater is spinning on the toes of her skates at 1.0 rev/s. Her arms are outstretched...Problem 84EAP:
The earth’s rotation axis, which is tilted 23.5 from the plane of the earth’s orbit, today points to...Problem 85EAP:
sThe bunchberry flower has the fastest-moving parts ever observed in a plant. Initially, the stamens...Problem 86EAP:
The two blocks in FIGURE CP12.86 are connected by a massless rope that passes over a pulley. The...Problem 87EAP:
A rod of length L and mass M has a nonuniform mass distribution. The linear mass density (mass per...Browse All Chapters of This Textbook
Chapter 1 - Concepts Of MotionChapter 2 - Kinematics In One DimensionChapter 3 - Vectors And Coordinate SystemsChapter 4 - Kinematics In Two DimensionsChapter 5 - Force And MotionChapter 6 - Dynamics I: Motion Along A LineChapter 7 - Newton’s Third LawChapter 8 - Dynamics Ii: Motion In A PlaneChapter 9 - Work And Kinetic EnergyChapter 10 - Interactions And Potential Energy
Chapter 11 - Impulse And MomentumChapter 12 - Rotation Of A Rigid BodyChapter 13 - Newton’s Theory Of GravityChapter 14 - Fluids And ElasticityChapter 15 - OscillationsChapter 16 - Traveling WavesChapter 17 - SuperpositionChapter 18 - A Macroscopic Description Of MatterChapter 19 - Work, Heat, And The First Law Of ThermodynamicsChapter 20 - The Micro/macro ConnectionChapter 21 - Heat Engines And
refrigeratorsChapter 22 - Electric Charges And ForcesChapter 23 - The Electric FieldChapter 24 - Gauss’s LawChapter 25 - The Electric PotentialChapter 26 - Potential And FieldChapter 27 - Current And ResistanceChapter 28 - Fundamentals Of CircuitsChapter 29 - The Magnetic FieldChapter 30 - Electromagnetic InductionChapter 31 - Electromagnetic Fields And WavesChapter 32 - Ac CircuitsChapter 33 - Wave OpticsChapter 34 - Ray OpticsChapter 35 - Optical InstrumentsChapter 36 - RelativityChapter 37 - The Foundations Of Modern PhysicsChapter 38 - QuantizationChapter 39 - Wave Functions And UncertaintyChapter 40 - One-dimensional Quantum MechanicsChapter 41 - Atomic PhysicsChapter 42 - Nuclear Physics
Sample Solutions for this Textbook
We offer sample solutions for PHY F/SCIENTIST MOD MASTERING 24 MO homework problems. See examples below:
Chapter 1, Problem 1CQChapter 2, Problem 1CQChapter 3, Problem 1CQChapter 4, Problem 1CQChapter 5, Problem 1CQChapter 6, Problem 1CQChapter 7, Problem 1CQChapter 8, Problem 1CQChapter 9, Problem 1CQ
Kinetic energy (K.E) =12mv2 Where, m = mass of body V = speed of body Hence it is dependentupon...Formula used: Momenta (p) = mass of the object (m) × velocity of the object (v) Given: Different...Center of mass of a body is a point where entire mass of the body is concentrated. It is the average...The gravitational force is equal. We pull on the earth with the same force it pulls on us. It's just...Given: An object has density ρ . (a) Each of the objects 3 dimensions is increased by a factor of 2...Given: The period T1 of an oscillating block is 2 s.The new mass, m2 is double the previous mass m1,...Given: Figure of three wave pulses travel along the same stretched spring Figure.1 Formula used: The...Given: A standing wave oscillating on a string at frequency f0. Formula used: f=nv/2l Where f is the...The method used is: Convert all the temperatures with a common unit. Then, arrange them into...Given: Surface of the space capsule get very hot as it passes through the atmosphere at high speed....The incompressibility in solids and liquids is due to the electrostatic repulsion of the atoms (and...Given Info: PV graph is given for the three processes. In the following graphs given, for the figure...Chapter 22, Problem 1CQChapter 23, Problem 1CQChapter 24, Problem 1CQChapter 25, Problem 1CQChapter 26, Problem 1CQIn the 1700’s; the reason for the glow of the bulb may be thought to be energy transfer from the...Chapter 28, Problem 1CQChapter 29, Problem 1CQFrom the Lenz’s law, the direction of induced current will be in a direction that will oppose the...(a) As it is given that a spaceship is moving towards left and perpendicular to its velocity a...Given: The following figure showing phasors are given. Explanation: From the figure we can find the...Given: In the given figure it shows light waves passing through two closely spaced, narrow slits....When ray of light is passes through the circular hole then after the diffraction of light, it makes...Explanation: We have Exposure = IΔtshutter, where I is the intensity and Δtshutter is the shutter...Given information : The following figure if two balls are given Calculation: The relative velocities...Explanation: Given: The following data is given A brass plate at room temperature radiates 10 W of...Given Info: Negatively charged electroscopeUltraviolet light The discharge is due to Photoelectric...Given: Figure of probability density of photons on the x-axis Figure.1 It is clear from the figure,...Given info: The de Broglie waves of three equal mass particles are shown Formula used: De- Broglie...Explanation: Given Info: The states of hydrogen atom are 6p, 5d and 4f. Formula for the energy of...Isotopes are atoms having the same atomic number (Z) but having the different mass number (A). In...
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