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Question 7
A boat B is moving with constant velocity. At noon, B is at the point with position vector (3i - 4j) km with respect to a fixed origin O. At 1430 on the same day, B ... show full transcript
Step 1
Answer
To find the velocity of boat B, we calculate the change in position over time. The initial position vector at noon is km and the position vector at 1430 (2.5 hours later) is km.
The change in position is:
ext{Time interval} &= 2.5 ext{ hours}. ext{Velocity} &= \frac{ ext{Position change}}{ ext{Time interval}} = \frac{5i + 15j}{2.5} = (2i + 6j) ext{ km/h}.$$ Thus, the velocity of B is $2i + 6j$ km/h.Step 2
Step 3
Step 4
Answer
To find the speed of both boats, we calculate the magnitudes of their velocities:
For boat B:
For boat C: The velocity of C can be found from its position vector. The components related to (with ) gives:
Thus, the velocity of C is:
Both speeds are equal as shown. Therefore, before C intercepts B, both boats moving at the same speed.
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