A delivery man starts at the post office, drives 40 km north, then 20 km west, then 60 km northeast, and finally 50 km north to stop for lunch. Use the analytical method to determine the following: (a) Find his net displacement vector. (b) How far is the restaurant from the post office? (c) If he returns directly from the restaurant to the post office, what is his displacement vector on the return trip? (d) What Is his compass heading on the return trip? Assume the +x-axis is to the east.
A delivery man starts at the post office, drives 40 km north, then 20 km west, then 60 km northeast, and finally 50 km north to stop for lunch. Use the analytical method to determine the following: (a) Find his net displacement vector. (b) How far is the restaurant from the post office? (c) If he returns directly from the restaurant to the post office, what is his displacement vector on the return trip? (d) What Is his compass heading on the return trip? Assume the +x-axis is to the east.
A delivery man starts at the post office, drives 40 km north, then 20 km west, then 60 km northeast, and finally 50 km north to stop for lunch. Use the analytical method to determine the following: (a) Find his net displacement vector. (b) How far is the restaurant from the post office? (c) If he returns directly from the restaurant to the post office, what is his displacement vector on the return trip? (d) What Is his compass heading on the return trip? Assume the +x-axis is to the east.
A traveler is exploring an unfamiliar cave in the Northern Luzon. She follows a passage 180 mstraight west, then 210 m in a direction 45 ̊ east of south, and then 280 m at 30 ̊ east of north.After a fourth unmeasured displacement, she finds herself back where she started. Draw thediagram following her path, then solve for the magnitude and direction of the fourthdisplacement. You may also try drawing a scale diagram of the given vectors using your ruler andprotractor, then measure the fourth displacement to check your quantitative answer.
A hiker walks 2.5 miles in a direction 65° West of North, then 3.5 miles in a direction 40° South of West, then 1.5 miles due South. What must be the vector displacement of the hiker during the fourth part of the trip in order for the resultant to be 5.5 miles due West for the entire trip? Drawing a vector diagram or drawing individual vectors will help.
A hiker's motion can be described by the following three displacement vectors.
22.0 km, 45 degrees + 16.0 km, 135 degrees + 12.0 km, 270 degrees
Add the three displacement vectors using the head-to-tail method of vector addition. Then answer the following two questions.
(a) What is the distance walked by the hiker?
(b) What is the resulting displacement of the hiker?
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