PODCAST · education
Physics 50 example problems
by Peter Beyersdorf
This is a video podcast of solutions to example problems from Dr. Beyersdorf's Physics 50 class at San Jose State University. Several episodes will be published each week including solutions to the previous week's homework and examples that may be useful in understanding current homework or preparing for upcoming exams.
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89
14-51 Tube of Mercury-fluid mechanics
For a tube containing mercury and water, find the difference in height of the mercury and water using Pascal's law
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88
14-47 Mass of a Planet-fluid mechanics
Given some measurements of the pressure in a fluid taken on the surface of an unknown planet, use Pascal's law and the universal law of gravitation to find the mass of the planet.
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87
14-37 Airplane Wing-fluid mechanics
Use Bernoulli's Equation to find the force on an airplane wing and then find the net force acting on the airplane.
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86
14-29 Shower Head-fluid mechanics
Use the continuity equation to find the exit velocity for water in a shower head
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85
14-25 Wood Floating in Oil-fluid mechanics
For a block of wood floating on top of a layer of water and below a layer of oil, find its mass and density given how high it is floating
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84
14-7 Gauge Pressure-fluid mechanics
Determine the gauge pressure at a given distance below the surface of a fluid using Pascal's law
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83
14-3 Density of Gold-fluid mechanics
Find the density of a piece of metal given its mass and volume. Is the metal gold?
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82
13-33 Cheese on a Spring-simple harmonic motion
For a piece of cheese oscillating on the end of a spring, find out how far the spring will be stretched when the oscillations stop.
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81
12-9 Gravitational Force Acting on the Moon-gravitation
Find the gravitational force acting on the moon from the Earth and Sun for moon at three different points in the lunar orbit
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80
11-13 Beam in Equilibrium-equilibrium
Find the tension in ropes holding up a beam in equilibrium.
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79
10-63 Block and Cylinder-dynamics of rotational motion
Find the acceleration of a block on a plane that is attached to a rotating cylinder which has non-negligible moment of inertia
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78
10-47 Gyroscope-dynamics of rotational motion
Determine the direction that a gyroscope precesses
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77
10-33 Power of a Motor-dynamics of rotational motion
Determine the lifting capacity of a motor with a given power and rotation rate
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76
10-19 Falling Yo Yo-dynamics of rotational motion
Find the acceleration of a falling yo-yo and the tension in the string as it falls
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75
10-7 Frictional Torque-dynamics of rotational motion
Find the frictional torque necessary to slow a spinning object a given amount in a given time
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74
10-3 Calculating Torque-dynamics of rotational motion
Find the torque exerted on an object by each of three different forces
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73
10-1 Calculating Torque-dynamics of angular motion
Find the torque that a force exerts on a wrench for six different configurations
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72
9-100 Moment of Inertia of a Cone-rotation of rigid bodies
Calculate the moment of inertia for a cone.
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71
9-85 Pulley With Inertia-rotation of rigid bodies
Solve for the speed of a falling block that must pull another block and spin a pulley that has inertia.
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70
9-63 Speedometer-rotation of rigid bodies
Relate the linear velocity of a car to the angular velocity of the axle as read by the speedometer
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69
9-52 Parallel Axis Theorem for a Wheel-rotation of rigid bodies
Use the parallel axis theorem to find the moment of inertia for a wheel rotating about a point on its rim.
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68
9-41 Moment of Inertia of a Wagon Wheel-rotation of rigid bodies
Find the moment of inertia for a wagon wheel given the size and shape of its components.
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67
9-37 Moment of Inertia of a Distribution of Masses-rotation of rigid bodies
Find the moment of inertia for a distribution of masses.
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66
9-29 Drill Speed-rotation of rigid bodies
Determine the linear acceleration of a point on the edge of a drill bit, given its angular velocity.
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65
9-21 Helicopter Rotor Blades-rotation of rigid bodies
Relate the parameters of angular motion for a helicopter rotor blade to the parameters of linear motion for a point on the tip of the blade.
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64
9-9 Rotating Flywheel-rotation of rigid bodies
Calculate the change in the angular velocity and angular displacement of a flywheel that is slowing down due to friction
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63
9-5 Instantaneous Angular Velocity-rotation of rigid bodies
Relate an expression for the angular displacement of a merry-go-round to its angular velocity and angular acceleration
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62
9-1 Angles and Arc Lengths-rotation of rigid bodies
Relate an angle to arc lengths subtended by the angle
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61
8-45 Center of Mass-momentum and collisions
Determine the center of mass of an object
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60
8-39 Head on Elastic Collision-momentum and collisions
Find the velocity of a ball after a head-on elastic collision
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59
8-35 Speed of a Bullet-momentum and collisions
Find the speed of a bullet by using the work-energy theorem and conservation of momentum during a collision with a block
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58
8-27 Collision of Two Pucks-momentum and collisions
Find the velocity of a puck after collision with another puck
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57
8-19 Compressed Spring-momentum and collisions
Find the velocities of two masses after they are launched by a spring
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56
8-17 Hip Check-momentum and collisions
Find the velocity of a hockey player after being hip-checked
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55
8-1 Momentum of a Truck-momentum and collisions
Find the momentum of a moving truck
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54
Gas Guzzling-work, energy, and power
Solutions to Homework 7 - Gas Guzzling
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53
Midterm 2 Solutions-fall 2006
Solutions to midterm #2
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52
Homework 6 - Design Your Own Rollercoaster - solutions
Solutions to the homework where you were asked about the parameters of a rollercoaster
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51
7-76 Minimum Speed of a Moving Block-conservation of energy
Find the angle of a ramp that causes a block sliding up the ramp to have the minimum speed after sliding a certain distance
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50
7-51 Bungee Jump-conservation of energy
Find the parameters of a bungee cord necessary for a given bungee jump
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49
7-46 Roller Coaster Loop-conservation of energy
Find the minimum height of a roller-coaster hill for the coaster to go over a loop successfully.
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48
7-41 Legal Physics-work and energy
Find the speed a car was traveling given the length of the skid marks it left when it stopped.
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47
7-33 Energy Diagram for Hydrogen-work and energy
Find the force on a particle from the energy diagram. Is it attractive or repulsive?
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46
7-29 Friction on a Book-work and energy
Check if friction is a conservative force or not by determining the work it does when a book sliding on a table moves in a closed path
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45
7-15 Energy in a Spring-work and energy
Find the energy stored in a spring when it is stretched or compressed
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44
7-2 Lifting a Sack of Sugar-work and energy
Find the force necessary to lift a sack of sugar. Find the work done.
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43
6-45 a Tandem Bike-work and energy
Find the power necessary to ride a bike at a given speed
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42
6-33 Compressing a Spring-work and energy
Find the work necessary to compress or stretch a spring
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41
6-14 Throwing a Rock-work and energy
Find the initial speed and eventual height of a thrown rock using the work energy theorem
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40
6-3 Reeling in a Fish-work and energy
Find the work done reeling in a fish
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ABOUT THIS SHOW
This is a video podcast of solutions to example problems from Dr. Beyersdorf's Physics 50 class at San Jose State University. Several episodes will be published each week including solutions to the previous week's homework and examples that may be useful in understanding current homework or preparing for upcoming exams.
HOSTED BY
Peter Beyersdorf
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