find the initial velocity when a 4.00 x 10^4 kg train slams on its brakes with an exertion force of 60,000 N and travels for 20 seconds and travels 300 m to a full stop. Find initial velocity and acceleration
find the initial velocity when a 4.00 x 10^4 kg train slams on its brakes with...
1. A 25 kg child riding a bicycle at 9.1 m/s slams on their brakes to stop in 1.7 s. What is the magnitude of the net force applied by the brakes to stop the child? 2. A 0.5 kg book is resting on a table. A student leans their hand on the book, exerting a 19 N downward force on the book. What is the magnitude of the Normal Force acting on the book? (Use 9.81 m/s2 for gravitational acceleration.)
An electron of mass 9.11 x 10-31 kg has an initial speed of 4.00 x 105 m/s. It travels in a straight line, and its speed increases to 7.60 x 105 m/s in a distance of 4.20 cm. Assume its acceleration is constant. (a) Determine the magnitude of the force exerted on the electron. N (b) Compare this force (F) with the weight of the electron (F), which we ignored. F ܗܝ| ܝ
QUESTION 12 A 1200 kg truck is moving in the -x direction at 26 m/s when it slams on its brakes. The truck comes to a stop in 0.83 s, moving a distance of 7.8 m in the process. What is the average force imparted by the brakes over this period, ignoring all other sorts of friction? 11800 N in the -x direction 11800 N in the +x direction 37600 N in the +x direction 37600 N in the -x...
A train moving east with an initial velocity of 0.500 m/s speeds up at 2.00 m/s for 20.0 seconds, then moves at constant velocity for 100. seconds and finally slows down to a stop during the final 30.0 seconds. (10 points) a. Sketch a position versus time graph for the train #1 2 Sketch a velocity versus time graph for the train use c. What was the acceleration as it slowed? d. What was the net displacement during the 150...
5. The motion of a train traveling on a straight track has the velocity versus time graph shown. a. Determine the total distance the train travels. There is more than one way to do this Try using a graphical approach. Answer: 574 meters. c. Determine the train's acceleration at t20 s. d. Determine the acceleration of the train during the last 20 seconds of its motion. 20 m/s 10 m/s 10 S 30 s 50 s
Liner motion A) A projectile has an initial horizontal velocity of 20 m/s at the edge of a rooftop. Find the horizontal and vertical components of its velocity after 2 s. B) A truck traveling at 60 km/h brakes to a stop in 50 m. What were the average acceleration and stopping time? C) An arrow is shot vertically upward with an initial velocity of 80 25 m/s. What is its maximum height? D) A hammer is thrown vertically upward...
A car is moving at a speed of 60 m/s, when the driver applies the brakes, which causes a deceleration of 2 m/s2. How many seconds will it take for the car to stop and how far will it travel till it stops? 30 sec, 450 meters 25 sec, 800 meters 30 sec, 1800 meters 20 sec, 900 meters 30 sec, 900 meters Flag this Question Question 192 pts You throw a ball downward from a height of 5 meters...
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Problem 1 2/11 Ball s launched with an initial vertical veloc- 01, 02 ity 160 ft/sec. Three seconds later, bal 2 is launched with an initial vertical velocity Deter- mine v if the balls are to collide at an altitude of 300 ft. At the instant of collisin is ball 1 ascending or descending? Problem 2 2/25 Small steel balls fall from rest through the open- ing at A at the steady rate...
An electron of mass 9.11 X 10-51 kg has an initial speed of 3.60 x 10 m/s. It travels in a straight line, and its speed increases to 7.20 x 10 m/s in a distance of 4.0 cm. Assume its acceleration is constant. (a) Determine the magnitude of the force exerted on the electron (b) Compare this force (F) with the weight of the electron (F), which we ignored.
A mass of 20 kg has an initial velocity of 3 m/s and a final velocity of 5 m/s. a) What was the change in kinetic energy in this system? b) How much Work was done? c) Assume that the mass is being influenced by a constant force. The mass travels a distance of 40 meters. What is the value of the force influencing it? d) What is the acceleration of the mass?