Concept explainers
A particle’s velocity is given by
- a. Describe the particle’s motion. In particular, is it speeding up, slowing down, or maintaining constant speed?
- b. Find the particle’s velocity at t = 0, t = 10.0 s, and t = 5.00 min.
- c. Find the particle’s speed at t = 0, t = 10.0 s, and t = 5.00 min.
(a)
The motion of the particle.
Answer to Problem 31PQ
The particle is speeding up.
Explanation of Solution
When the particle is moving, as time increases, the velocity of the particle increases. As velocity increases with time, the motion of the particle can be described as increasing speed.
Therefore, the particle is speeding up.
(b)
The particle’s velocity at
Answer to Problem 31PQ
The particle’s velocity at
Explanation of Solution
Write the expression for the value of the velocity of the particle in terms of the time taken.
Here,
Conclusion:
Substitute
Substitute
Substitute
Therefore, the particle’s velocity at
(c)
The particle’s speed at
Answer to Problem 31PQ
The particle’s speed at
Explanation of Solution
Write the expression for the value of the speed of the particle in terms of the time taken.
Here,
Conclusion:
Substitute
Substitute
Substitute
Therefore, the particle’s velocity at
Want to see more full solutions like this?
Chapter 2 Solutions
Webassign Printed Access Card For Katz's Physics For Scientists And Engineers: Foundations And Connections, 1st Edition, Single-term
- Figure P2.33 shows the y-position (in blue) of a particle versus time. a. What is the average velocity of the particle during the time interval t = 1.00 s to t = 3.50 s? b. Using the tangent to the curve (shown as the orange line in the figure), what is the instantaneous velocity of the particle at t = 1.50 s? c. At what time is the velocity of the particle equal to zero? FIGURE P2.33arrow_forwardIn a cartoon program, Peter tosses his baby, Stewie, up into the air to keep the child entertained. Stewie reaches a maximum height of 0.873 m above the release point. Suppose the positive y axis points upward, a. With what initial velocity was Stewie thrown? b. How much time did it take Stewie to reach the peak height?arrow_forwardA train leaving Albuquerque travels 293 miles, due east, to Amarillo. The train spends a couple of days at the station in Amarillo and then heads back west 107 miles where it stops in Tucumcari. Suppose the positive x direction points to the east and Albuquerque is at the origin of this axis. a. What is the total distance traveled by the train from Albuquerque to Tucumcari? b. What is the displacement of the train for the entire journey? Give both answers in appropriate SI units.arrow_forward
- A particles position is given by z(t) = (7.50 m/s2) t2 for t 0. a. Find an expression for the particles velocity as a function of time. b. Is the particle speeding up, slowing down, or maintaining a constant speed? c. What are the particles position, velocity, and speed at t = 6.50 min?arrow_forwardHelparrow_forwardb. Find an expression for the particle's velocity ỷ as a function of time. c. What is the particle's speed at t= 0, 2, and 5 s? 24. I| a. What is the angle o between vectors E and F in FIGURE P3.24? b. Use geometry and trigonometry to determine the magnitude and direction of G = È + F. c. Use components to determine the magnitude and direction of Ĝ = È + F. ibarrow_forward
- a. Find the velocity v(t) and acceleration a(t). b. At what value of t does v=0? c. What is the maximum height?arrow_forwardAn astronaut lands on a newly discovered planet (that has a nice gravitational constant). He proceeds to jump out of the spacecraft and onto the planet's surface. His height above the ground (in feet) after t seconds is given by the function h (t) =-3t2 +12t +36. A. How high off the ground is the astronaut after 1 second? B. What is the astronaut's velocity after 1 second? Is he traveling up or down? C. How fast is the astronaut traveling when he lands on the planet? D. When will the astronaut be at his highest point in the jump? E. Is the astronaut speeding up or slowing down after 2 seconds? At what rate?arrow_forwardA stone is thrown vertically upward with a speed of 17.6 m/sm/s from the edge of a cliff 75.0 mm high. A.)How much later does it reach the bottom of the cliff? Express your answer to three significant figures and include the appropriate units. B.)What is its speed just before hitting? Express your answer to three significant figures and include the appropriate units. C.)What total distance did it travel? Express your answer to three significant figures and include the appropriate units.arrow_forward
- A small rock is thrown vertically upward with a speed of 29.0 m/s from the edge of the roof of a 21.0 m-tall building. The rock doesn't hit the building on its way back down and lands in the street below. Ignore air resistance. a. What is the speed of the rock just before it hits the street? b.arrow_forwardA kangaroo can jump over an object 2.7 m high. a. Calculate its vertical speed when it leaves the ground, in meters per second. b. How many seconds is it in the air?arrow_forwardAn object is dropped from a tower, 200 ft above the ground. Theobject's height above ground t sec into the fall is s=200−16t^2. a. What is the object's velocity, speed, and acceleration at time t? b. About how long does it take the object to hit the ground? c. What is the object's velocity at the moment of impact?arrow_forward
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning