
Concept explainers
A ball is thrown straight upward with an initial velocity of 18 m/s. Use g = 10 m/s2 for computations listed here.
- a. What is its velocity at the high point in its motion?
- b. How much time is required to reach the high point?
- c. How high above its starting point is the ball at its high point?
- d. How high above its starting point is the ball 3 seconds after it is released?
- e. Is the ball moving up or down 2 seconds after it is released?
(a)

The velocity of the ball at the high point.
Answer to Problem 1SP
The velocity of the ball at the high point is
Explanation of Solution
Given Info: A ball is thrown up with initial velocity
The velocity is defined as the rate of change of displacement of the object.
The ball is thrown up. The displacement is upwards but it is acted upon by the acceleration due to gravity which is acting in the downward direction. This means that the velocity decreases as it goes up. This means that velocity becomes zero as the ball is at the highest point. Therefore, the velocity is
Conclusion:
Thus, the velocity of the ball at the high point is
(b)

The time taken by the ball to reach the high point.
Answer to Problem 1SP
The time taken by the ball to reach the high point is
Explanation of Solution
Given Info: A ball is thrown up with initial velocity
Write the expression for the final velocity at the high point.
Here,
Substitute
Substitute
Conclusion:
Thus, the time taken by the ball to reach the high point is
(c)

The height of the ball above its starting point at its high point.
Answer to Problem 1SP
The height of the ball above its starting point at its high point is
Explanation of Solution
Given Info: A ball is thrown up with initial velocity
Write the expression for the vertical distance travelled.
Here,
Substitute
Conclusion:
Thus, the height of the ball above its starting point at its high point is
(d)

The height of the ball above its starting point
Answer to Problem 1SP
The height of the ball above its starting point
Explanation of Solution
Given Info: A ball is thrown up with initial velocity
Write the expression for the vertical distance travelled.
Substitute
Conclusion:
Thus, the height of the ball above its starting point
(e)

Whether the ball is moving up or down
Answer to Problem 1SP
The ball is moving down
Explanation of Solution
Given Info: A ball is thrown up with initial velocity
Write the expression for the final velocity at the high point.
Substitute
Substitute
This is less than
Conclusion:
Thus, the ball is moving down
Want to see more full solutions like this?
Chapter 3 Solutions
Physics of Everyday Phenomena
- Frictionless surfarrow_forward71. A 2.1-kg mass is connected to a spring with spring constant 72 k = 150 N/m and unstretched length 18 cm. The two are mounted on a frictionless air table, with the free end of the spring attached to a frictionless pivot. The mass is set into circular mo- tion at 1.4 m/s. Find the radius of its path. cor moving at 77 km/h negotiat CH —what's the minimum icient of frictioarrow_forward12. Two forces act on a 3.1-kg mass that undergoes acceleration = 0.91 0.27 m/s². If one force is -1.2î – 2.5ĵ N, what's the other?arrow_forward
- 36. Example 5.7: You whirl a bucket of water around in a vertical circle of radius 1.22 m. What minimum speed at the top of the circle will keep the water in the bucket?arrow_forwardPassage Problems Laptop computers are equipped with accelerometers that sense when the device is dropped and then put the hard drive into a protective mode. Your computer geek friend has written a program that reads the accel- erometer and calculates the laptop's apparent weight. You're amusing yourself with this program on a long plane flight. Your laptop weighs just 5 pounds, and for a long time that's what the program reports. But then the "Fasten Seatbelt" light comes on as the plane encounters turbu- lence. Figure 4.27 shows the readings for the laptop's apparent weight over a 12-second interval that includes the start of the turbulence. 76. At the first sign of turbulence, the plane's acceleration a. is upward. b. is downward. c. is impossible to tell from the graph. 77. The plane's vertical ac- celeration has its greatest magnitude a. during interval B. b. during interval C. c. during interval D. 78. During interval C, you can conclude for certain that the plane is Apparent…arrow_forwardIf the metal sphere on the Van de Graff has a charge of 0.14 Coulombs and the person has a mass of 62 kg, how much excess charge would the person need in order to levitate at a distance 25 cm from the center of the charged metal sphere? Assume you can treat both the person and the metal sphere as point charges a distance 25 cm from each otherarrow_forward
- If the metal sphere on the Van de Graff has a charge of 0.14 Coulombs and the person has a mass of 62 kg, how much excess charge would the person need in order to levitate at a distance 25 cm from the center of the charged metal sphere? Assume you can treat both the person and the metal sphere as point charges a distance 25 cm from each other (so that you can use Coulomb's Law to calculate the electrical force).arrow_forwardUsing Coulomb's Law, calculate the magnitude of the electrical force between two protons located 1 meter apart from each other. (Give your answer as the number of Newtons but as usual you only need to include the number, not the unit label.)arrow_forwardPart A You want to get an idea of the magnitude of magnetic fields produced by overhead power lines. You estimate that a transmission wire is about 12 m above the ground. The local power company tells you that the line operates at 12 kV and provide a maximum of 60 MW to the local area. Estimate the maximum magnetic field you might experience walking under such a power line, and compare to the Earth's field. [For an ac current, values are rms, and the magnetic field will be changing.] Express your answer using two significant figures. ΟΤΕ ΑΣΦ VAΣ Bmax= Submit Request Answer Part B Compare to the Earth's field of 5.0 x 10-5 T. Express your answer using two significant figures. Ο ΑΣΦ B BEarth ? ? Tarrow_forward
- Ho propel 9-kN t. Boat 27. An elevator accelerates downward at 2.4 m/s². What force does the elevator's floor exert on a 52-kg passenger?arrow_forward16. 17 A CUIN Starting from rest and undergoing constant acceleration, a 940-kg racing car covers 400 m in 4.95 s. Find the force on the car.arrow_forward----- vertical diste Section 4.6 Newton's Third Law 31. What upward gravitational force does a 5600-kg elephant exert on Earth?arrow_forward
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage LearningUniversity Physics Volume 1PhysicsISBN:9781938168277Author:William Moebs, Samuel J. Ling, Jeff SannyPublisher:OpenStax - Rice UniversityGlencoe Physics: Principles and Problems, Student...PhysicsISBN:9780078807213Author:Paul W. ZitzewitzPublisher:Glencoe/McGraw-Hill
- College PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning





