A ferry boat is crossing a river that is 8.5 x 10^2 m wide.

AI Thread Summary
The discussion revolves around a physics problem involving a ferry boat crossing a river 850 meters wide, with water velocity at 3.8 m/s east and boat velocity at 4.9 m/s south. Participants calculate the boat's velocity relative to the shore as 6.2 m/s at an angle of 52° east of south using the Pythagorean theorem. There is some debate about the angle of the resultant velocity and the specifics of the problem statement, particularly whether the ferry aims to land directly across or reach the shore in the shortest time. Clarity on the problem's intent is emphasized as it affects the approach to the solution. The conversation highlights the importance of precise problem statements in physics discussions.
Ayushi
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Homework Statement


A ferry boat is crossing a river that is 8.5 x 10^2 m wide.

The average velocity of the water relative to the shore is 3.8 m/s E and the average velocity of the boat relative to the water is 4.9 m/s S.
How long does it take for the boat to get across?

Homework Equations

The Attempt at a Solution


The velocity of the boat relative to the shore is 6.2 m/s [52° E of S].
 
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Hello ayushi, :welcome:
Ayushi said:
The velocity of the boat relative to the shore is 6.2 m/s [52° E of S].
How did you come to that conclusion ?
 
BvU said:
Hello ayushi, :welcome:

How did you come to that conclusion ?
I used the pythagorean theorem to figure the velocity of the boat relative to the shore.
3.8 m/s E ^2 + 4.9 m/s S ^2
And got 6.2 m/s E of S
 
Think of it from the point of view of the boat. How fast is the shore approaching if the boat is pointed straight across the river?

You'll also need the distance to the other shore, which I assume you were given even though you didn't include it.
 
Ayushi said:
I used the pythagorean theorem to figure the velocity of the boat relative to the shore.
3.8 m/s E ^2 + 4.9 m/s S ^2
And got 6.2 m/s E of S
6.2 meters per second yes. But the angle is suspect.
RPinPA said:
You'll also need the distance to the other shore, which I assume you were given even though you didn't include it.
It is stashed in the title -- 850 meters.
 
The problem statement does not specifically indicate whether the ferry is to land directly opposite its starting point, or just reach the other shore in the quickest time possible (although this is a common enough problem type that it is almost surely the former case). Just thought I'd point that out. Imprecisely stated problem statements can sometimes be time wasting as helpers have to tease out the details before being able to work the actual problem.
 
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