Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
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Chapter 3, Problem 66GP

(a)

To determine

To Formulate:The time needed to make a roundtripof total distance when the boat is movingupstream and back downstream.

(a)

Expert Solution
Check Mark

Answer to Problem 66GP

The total time taken to cover D distance of roundtrip is t=(Dvv2u2)

Explanation of Solution

Given data:

Speed of boat in still water is v .

The speed of river current is u .

Total distance of roundtrip is D.

Formula used:

The speed-distance relation is given by:

  s=dt

Where, s is the speed of an object travelling d distance in t time.

Calculation:

Assume speed of boat in still water, v is more than the speed of river current, u , otherwise the boat will not move upstream.

The distance covered when the boat moves upstream is d1=D2 .

While moving upstream, the boat moves against the river current.

Therefore, speed of the boat, s1=vu

Hence, the time taken to move upstream,

  t1=d1s1=D/2vu=D2(vu)

While moving downstream, the boat moves with the river current.

Therefore, speed of the boat, s2=v+u

The distance covered when the boat moves downstream is d2=D2 .

Hence, the time taken to move downstream,

  t2=d2s2=D/2v+u=D2(v+u)

Therefore, total time taken to cover D distance of roundtrip is

  t=t1+t2=D2(vu)+D2(v+u)=D2(1(vu)+1(v+u))=D2(v+u+vuv2u2)=D2(2vv2u2)=(Dvv2u2)

Conclusion:

The total time taken to cover D distance of roundtrip is t=(Dvv2u2)

(b)

To determine

To Formulate:The time needed to make a roundtripof total distance when the boat is movingdirectly across the river and back.

(b)

Expert Solution
Check Mark

Answer to Problem 66GP

The totaltime needed to make a roundtripwhen the boat is movingdirectly across the river and back is t=Dv2u2 .

Explanation of Solution

Given data:

Speed of boat in still water is v .

The speed of river current is u .

Total distance of roundtrip is D.

Formula used:

The speed-distance relation is given by:

  s=dt

Where s is the speed of an object travelling d distance in t time.

Calculation:

For the boat to move directly across the water, it must at a certain angle with river current such that net velocity is straight across the river.

Assume speed of boat in still water, v is more than the speed of river current, u .

That is, vboat relative to shore=v+u

  Physics: Principles with Applications, Chapter 3, Problem 66GP

Now, the velocity of boat relative to shore, vboat relative to shore=v2u2 (as per the diagram)

The distance covered when the boat moves across the river is d1=D2 .

Hence, the time taken to move directly across the river

  t1=D/2v2u2=D2v2u2

Similarly the time taken in coming back is

  t=t1+t2=D2v2u2+D2v2u2=Dv2u2

Therefore, total time taken to cover D distance of roundtrip is

  t=t1+t2=D2v2u2+D2v2u2=Dv2u2

Conclusion:

The total time needed to make a roundtripwhen the boat is movingdirectly across the river and back is t=Dv2u2

Chapter 3 Solutions

Physics: Principles with Applications

Ch. 3 - Prob. 11QCh. 3 - Prob. 12QCh. 3 - Prob. 13QCh. 3 - A projectile is launched at an upward angle of 300...Ch. 3 - Prob. 15QCh. 3 - Two cannonballs, A and B, are fired from the...Ch. 3 - 18. A person sitting in an enclosed train car,...Ch. 3 - Prob. 18QCh. 3 - Prob. 19QCh. 3 - Prob. 20QCh. 3 - A car is driven 225 km west and then 98 km...Ch. 3 - A delivery truck travels 21 blocks north, 16...Ch. 3 - If Vx=9.80 units and Vy=6.40 units, determine the...Ch. 3 - Graphically determine the resultant of the...Ch. 3 - V is a vector 24.8 units in magnitude and points...Ch. 3 - Vector V is 6.6 using long and points along the...Ch. 3 - Figure 3-33 shows two vectors, A and B , whose...Ch. 3 - Prob. 8PCh. 3 - Three vectors are shown in Fig. 3-35 Q. Their...Ch. 3 - (a) given the vectors A and B shown in Fig. 3-35,...Ch. 3 - Determine the vector AC , given the vectors A and...Ch. 3 - For the vectors shown in Fig. 3—35, determine (a)...Ch. 3 - Prob. 13PCh. 3 - Prob. 14PCh. 3 - Prob. 15PCh. 3 - Prob. 16PCh. 3 - Prob. 17PCh. 3 - 17. (l) A tiger leaps horizontally from a...Ch. 3 - 18. (l) A diver running 2.5 m/s dives out...Ch. 3 - Prob. 20PCh. 3 - Prob. 21PCh. 3 - Prob. 22PCh. 3 - Prob. 23PCh. 3 - Prob. 24PCh. 3 - Prob. 25PCh. 3 - Prob. 26PCh. 3 - Prob. 27PCh. 3 - Prob. 28PCh. 3 - Prob. 29PCh. 3 - Prob. 30PCh. 3 - Prob. 31PCh. 3 - Prob. 32PCh. 3 - Prob. 33PCh. 3 - Prob. 34PCh. 3 - Prob. 35PCh. 3 - Prob. 36PCh. 3 - Prob. 37PCh. 3 - Prob. 38PCh. 3 - Prob. 39PCh. 3 - Prob. 40PCh. 3 - Prob. 41PCh. 3 - Prob. 42PCh. 3 - Prob. 43PCh. 3 - Prob. 44PCh. 3 - Prob. 45PCh. 3 - Prob. 46PCh. 3 - Prob. 47PCh. 3 - Prob. 48PCh. 3 - Prob. 49PCh. 3 - Prob. 50PCh. 3 - Prob. 51PCh. 3 - Prob. 52PCh. 3 - Prob. 53GPCh. 3 - Prob. 54GPCh. 3 - Prob. 55GPCh. 3 - Prob. 56GPCh. 3 - Prob. 57GPCh. 3 - Prob. 58GPCh. 3 - Prob. 59GPCh. 3 - Prob. 60GPCh. 3 - Prob. 61GPCh. 3 - Prob. 62GPCh. 3 - Prob. 63GPCh. 3 - Prob. 64GPCh. 3 - Prob. 65GPCh. 3 - Prob. 66GPCh. 3 - Prob. 67GPCh. 3 - Prob. 68GPCh. 3 - Prob. 69GPCh. 3 - Prob. 70GPCh. 3 - Prob. 71GPCh. 3 - Prob. 72GPCh. 3 - Prob. 73GPCh. 3 - Prob. 74GPCh. 3 - Prob. 75GP
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