GO Figure 2-42 shows part of a street where traffic flowis to be controlled to allow a platoon of cars to move smoothly along the street. Suppose that the platoon leaders have justreached intersection 2, where the green appeared when they were distance d from the intersection. They continue to travel at a certain speed v p (the speed limit) to reach intersection 3, where the green appears when they are distance d from it. The intersections are separated by distances D 23 and D 12 . (a) What should be the time delay of the onset of green at intersection 3 relative to that at intersection 2 to keep the platoon moving smoothly? Figure 2-42 Problem 76. Suppose, instead, that the platoon had been stopped by a red light at intersection 1. When the green comes on there, the leaders require a certain time t r to respond to the change and an additional time to accelerate at some rate a to the cruising speed v p . (b) If the green at intersection 2 is to appear when the leaders are distance d from that intersection, how long after the light at intersection 1 turns green should the light at intersection 2 turn green?
GO Figure 2-42 shows part of a street where traffic flowis to be controlled to allow a platoon of cars to move smoothly along the street. Suppose that the platoon leaders have justreached intersection 2, where the green appeared when they were distance d from the intersection. They continue to travel at a certain speed v p (the speed limit) to reach intersection 3, where the green appears when they are distance d from it. The intersections are separated by distances D 23 and D 12 . (a) What should be the time delay of the onset of green at intersection 3 relative to that at intersection 2 to keep the platoon moving smoothly? Figure 2-42 Problem 76. Suppose, instead, that the platoon had been stopped by a red light at intersection 1. When the green comes on there, the leaders require a certain time t r to respond to the change and an additional time to accelerate at some rate a to the cruising speed v p . (b) If the green at intersection 2 is to appear when the leaders are distance d from that intersection, how long after the light at intersection 1 turns green should the light at intersection 2 turn green?
GO Figure 2-42 shows part of a street where traffic flowis to be controlled to allow a platoon of cars to move smoothly along the street. Suppose that the platoon leaders have justreached intersection 2, where the green appeared when they were distance d from the intersection. They continue to travel at a certain speed vp (the speed limit) to reach intersection 3, where the green appears when they are distance d from it. The intersections are separated by distances D23 and D12. (a) What should be the time delay of the onset of green at intersection 3 relative to that at intersection 2 to keep the platoon moving smoothly?
Figure 2-42 Problem 76.
Suppose, instead, that the platoon had been stopped by a red light at intersection 1. When the green comes on there, the leaders require a certain time tr to respond to the change and an additional time to accelerate at some rate a to the cruising speed vp. (b) If the green at intersection 2 is to appear when the leaders are distance d from that intersection, how long after the light at intersection 1 turns green should the light at intersection 2 turn green?
The figure shows the path taken by a drunk skunk over level ground, from initial point i to final point f. The angles are 9-26.0%
8₂-49.0% and 6-76.0°, and the distances are d₁ - 5.90 m, d₂-7.40 m. and da = 12.0 m. What are the (al magnitude and (b) angle of
the skunk's displacement from i to f? Give the angle as a positive (counterclockwise) or negative (clockwise) angle of magnitude less
than 180°, measured from the +x direction.
Units
(a) Number
Units
(b) Number
i
A river is moving east at 5 m/s. A boat starts from the dock heading 40◦ south of east at 8 m/s. If the river is 2000 m wide, (a) what is the velocity of the boat with respect to Earth and (b) how long does it take the boat to cross the river?
Car A is traveling on the circular road at the constant speed of vå = 60 km/h. At the instant
shown, the speed of car B on the overpass is VB = 80 km/h, and it is decreasing at the rate
of 1.6 m/s². Find the relative velocity and acceleration vectors (VB/A, aB/A) at this instant.
A
400 m
40°
VB
B
onders
X
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