A boat is traveling upstream at 10 km/h with respect to the water of a river. The water is flowing at 7.0 km/h with respect to the ground. What are the (a) magnitude and (b) direction of the boat's velocity with respect to the ground? A child on the boat walks from front to rear at 4.0 km/h with respect to the boat.What are the (c) magnitude and (d) direction of the child's velocity with respect to the ground?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 6P: At t = 0, a particle moving in the xy plane with constant acceleration has a velocity of...
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A boat is traveling upstream at 10 km/h with respect to the water of a river. The water is flowing at 7.0 km/h with respect to the
ground. What are the (a) magnitude and (b) direction of the boať's velocity with respect to the ground? A child on the boat walks
from front to rear at 4.0 km/h with respect to the boat.What are the (c) magnitude and (d) direction of the child's velocity with
respect to the ground?
Transcribed Image Text:A boat is traveling upstream at 10 km/h with respect to the water of a river. The water is flowing at 7.0 km/h with respect to the ground. What are the (a) magnitude and (b) direction of the boať's velocity with respect to the ground? A child on the boat walks from front to rear at 4.0 km/h with respect to the boat.What are the (c) magnitude and (d) direction of the child's velocity with respect to the ground?
At t1 = 3.00 s, the acceleration of a particle moving at constant speed in counterclockwise circular motion is
af = (6.00 m/s²)î + (4.00 m/s² )ĵ
At t2 = 4.00 s (less than one period later), the acceleration is
az
(4.00 m/s² )î – (6.00 m/s² )ĵ
-
The period is more than 1.00 s. What is the radius of the circle?
Transcribed Image Text:At t1 = 3.00 s, the acceleration of a particle moving at constant speed in counterclockwise circular motion is af = (6.00 m/s²)î + (4.00 m/s² )ĵ At t2 = 4.00 s (less than one period later), the acceleration is az (4.00 m/s² )î – (6.00 m/s² )ĵ - The period is more than 1.00 s. What is the radius of the circle?
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