A speeding car traveling at a constant velocity of 24 m/s passes a police care initially at rest beside the roadway. If the police car with constant acceleration of 6.05 m ⁄ s^2 immediately pursues the speeding car, how far down the road does it draw even with the speeding car?
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A speeding car traveling at a constant velocity of 24 m/s passes a police care initially...
A speeding car is traveling at a constant 25 m/s when it passes a stationary police car. If the police car delays for 1.00 s before starting, what must be the magnitude of the constant acceleration of the police car to catch the speeding car after the police car travels a distance of 371 m?
A speeding driver with a constant speed of 90.0 km/h passes a stopped police car. The police car immediately takes off after him and accelerates with a constant acceleration of 5.0 m/s2. The time needed for the police car to overtake the speeding driver is closest to …
Choose the Correct answers: 1. A police officer spots a speeding car traveling at 20 m/s (approximately 44 mph) as it passes The officer immediately starts to drive, accelerating from rest at a rate of 5 m/s2. How far will the officer have to drive betore catchıng up to the speeding car? (a) 100 m (b) 80 m (c) 500 m (d) 16 m (e) 160 m 2. A ball is thrown with velocity of 10m/s upwards. If the ball...
A car traveling at a constant speed of 29.0 m/s passes a trooper hidden behind a billboard. One second after the speeding car passes the billboard, the trooper sets off in chase with a constant acceleration of 2.90 m/s2. How long does it take the trooper to overtake the speeding car?
Please show work 3. A car traveling at a constant 39 m/s (-87 mph) passes a police car that is initially traveling at 25 m/s (55 mph). At the instant of the pass, the police car accelerates at a constant rate of 3.3 m/s in pursuit. We wish to find how much time elapses before the officer catches the car. (a) Identify the initial states when the car passes the police. (b) Define the final state or conditions which enable...
2. A police car is traveling at a constant velocity of 20.0 m/s due north, when a car zooms by at a constant velocity of 45.0 m/s due north. After a reaction time of 0.800 s the policeman begins to pursue the speeder with an acceleration of 5.00 m/s?. Including the reaction time, how long does it take for the police car to catch up with the speeder? Sketch the position vs time plot for the two motions and show...
Problem A car traveling at a constant speed of 24.0 m/s passes a trooper hidden behind a billboard, as in Figure 2.17. One second after the speeding car passes the billboard, the trooper sets off in chase with a constant acceleration of 3.00 m/s. (a) How long does it take the trooper to overtake the speeding car? b) How fast is the trooper going at that time? Figure 2.17 (Example 2.5) A speeding car passes a hidden trooper. When does...
A police car is traveling at a velocity of 18.0 m/s due north, when a car zooms by at a constant velocity of 48.0 m/s due north. After a reaction time 0.300 s the policeman begins to pursue the speeder with an acceleration of 4.00 m/s^2. Including the reaction time, how long does it take for the police car to catch up with the speeder?
A police car is traveling at a velocity of 18.0 m/s due north, when a car zooms by at a constant velocity of 48.0 m/s due north. After a reaction time 0.600 s the policeman begins to pursue the speeder with an acceleration of 3.00 m/s^2. Including the reaction time, how long does it take for the police car to catch up with the speeder?
A police car is traveling at a velocity of 19.0 m/s due north, when a car zooms by at a constant velocity of 40.0 m/s due north. After a reaction time 0.500 s the policeman begins to pursue the speeder with an acceleration of 4.00 m/s^2. Including the reaction time, how long does it take for the police car to catch up with the speeder?