COLLEGE PHYSICS,V.1-W/ENH.WEBASSIGN
COLLEGE PHYSICS,V.1-W/ENH.WEBASSIGN
10th Edition
ISBN: 9781305411906
Author: SERWAY
Publisher: CENGAGE L
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Textbook Question
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Chapter 2, Problem 50P

A small mailbag is released from a helicopter that is descending steadily at 1.50 m/s. After 2.00 s, (a) what is the speed of the mailbag, and (b) how far is it below the helicopter? (c) What are your answers to parts (a) and (b) if the helicopter is rising steadily at 1.50 m/s?

(a)

Expert Solution
Check Mark
To determine
The magnitude of the velocity of the mailbag.

Answer to Problem 50P

The magnitude of the velocity of the mailbag is 21.1m/s .

Explanation of Solution

Given Info: The initial velocity of the mailbag is 1.50m/s , the acceleration of the mailbag is 9.80m/s2 , and the time taken is 2.00s .

Explanation:

The formula used to calculate final velocity of the mailbag is,

vbag=v0+at

Here,

vbag is the final velocity of the mailbag

v0 is the initial velocity of the mailbag

a is the acceleration of the mailbag

t is the time taken

Substitute 1.50m/s for v0 , 2.00s for t , and 9.80m/s2 for a to find vbag .

vbag=1.50m/s+(9.80m/s2)(2.00s)=21.1m/s

Thus, the magnitude of the velocity of the mailbag is 21.1m/s .

Conclusion:

The magnitude of the velocity of the mailbag is 21.1m/s .

(b)

Expert Solution
Check Mark
To determine
The distance separating the package and the helicopter.

Answer to Problem 50P

The distance separating the package and the helicopter is 19.6m .

Explanation of Solution

The formula used to calculate the displacement of the mailbag is,

(Δy)bag=(vbag+v02)t

Here,

(Δy)bag is the displacement of the mailbag

Substitute 1.50m/s for v0 , 2.00s for t , and 21.1m/s for vbag to find (Δy)bag .

(Δy)bag=((21.1m/s)+(1.50m/s)2)(2.00s)=22.6m

Thus, the displacement of the mailbag is 22.6m .

The formula used to calculate the displacement of the copter is,

(Δy)copter=v0t

Here,

(Δy)copter is the displacement of the helicopter

Substitute 1.50m/s for v0 and 2.00s for t to find (Δy)copter .

(Δy)copter=(1.50m/s)(2.00s)=3.00m

Thus, the displacement of the copter is 3.00m .

The formula used to calculate the distance separating the package and the helicopter is,

d=||(Δy)bag||(Δy)copter||

Here,

d is the distance separating the package and the helicopter

Substitute 22.6m for (Δy)bag and 3.00m for (Δy)copter to find d .

d=||22.6m||3.00m||=19.6m

Thus, the distance separating the package and the helicopter is 19.6m .

Conclusion:

The distance separating the package and the helicopter is 19.6m .

(c)

Expert Solution
Check Mark
To determine
Answers to part (a) and (b) if the helicopter is rising steadily at 1.50m/s .

Answer to Problem 50P

Answers to part (a) and (b) if the helicopter is rising steadily at 1.50m/s are 18.1m/s and 19.6m .

Explanation of Solution

Given Info: The initial velocity of the mailbag is 1.50m/s , the acceleration of the mailbag is 9.80m/s2 , and the time taken is 2.00s .

Explanation:

The formula used to calculate final velocity of the mailbag is,

vbag=v0+at

Here,

vbag is the final velocity of the mailbag

v0 is the initial velocity of the mailbag

a is the acceleration of the mailbag

t is the time taken

Substitute 1.50m/s for v0 , 2.00s for t , and 9.80m/s2 for a to find vbag .

vbag=1.50m/s+(9.80m/s2)(2.00s)=18.1m/s

Thus, the magnitude of velocity of the mailbag is 18.1m/s .

The formula used to calculate the displacement of the mailbag is,

(Δy)bag=(vbag+v02)t

Here,

(Δy)bag is the displacement of the mailbag

Substitute 1.50m/s for v0 , 2.00s for t , and 18.1m/s for vbag to find (Δy)bag .

(Δy)bag=((18.1m/s)+(1.50m/s)2)(2.00s)=16.6m

Thus, the displacement of the mailbag is 16.6m .

The formula used to calculate the displacement of the copter is,

(Δy)copter=v0t

Here,

(Δy)copter is the displacement of the helicopter

Substitute 1.50m/s for v0 and 2.00s for t to find (Δy)copter .

(Δy)copter=(1.50m/s)(2.00s)=3.00m

Thus, The displacement of the copter is 3.00m .

The formula used to calculate the distance separating the package and the helicopter is,

d=|(Δy)bag(Δy)copter|

Here,

d is the distance separating the package and the helicopter

Substitute 16.6m for (Δy)bag and 3.00m for (Δy)copter to find d .

d=|16.6m3.00m|=19.6m

Thus, the distance separating the package and the helicopter is 19.6m .

Conclusion:

Answers to part (a) and (b) if the helicopter is rising steadily at 1.50m/s are 18.1m/s and 19.6m .

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Chapter 2 Solutions

COLLEGE PHYSICS,V.1-W/ENH.WEBASSIGN

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(a)...Ch. 2 - A person travels by car from one city to another...Ch. 2 - The current indoor world record time in the 200-m...Ch. 2 - Two boats start together and race across a...Ch. 2 - A graph of position versus time for a certain...Ch. 2 - A motorist drives for 35.0 minutes at 85.0 km/h...Ch. 2 - A tennis player moves in a straight-line path as...Ch. 2 - A jet plane has a takeoff speed of v0 = 75 m/s and...Ch. 2 - Two cars travel in the same direction along a...Ch. 2 - The cheetah can reach a top speed of 114 km/h (71...Ch. 2 - An athlete swims the length L of a pool in a time...Ch. 2 - A person lakes a trip, driving with a constant...Ch. 2 - A tortoise can run with a speed of 0.10 m/s, and a...Ch. 2 - To qualify for the finals in a racing event, a...Ch. 2 - Prob. 16PCh. 2 - A graph of position versus time for a certain...Ch. 2 - A race car moves such that, its position fits the...Ch. 2 - Runner A is initially 4.0 mi west of a flagpole...Ch. 2 - A particle starts from rest and accelerates as...Ch. 2 - A 50.0-g Super Ball traveling at 25.0 m/s bounces...Ch. 2 - The average person passes out at an acceleration...Ch. 2 - A certain car is capable of accelerating at a rate...Ch. 2 - The velocity vs. time graph for an object moving...Ch. 2 - A steam catapult launches a jet aircraft from the...Ch. 2 - PROBLEM A race car starting from rest accelerates...Ch. 2 - An object moving with uniform acceleration has a...Ch. 2 - In 1865 Jules Verne proposed sending men to the...Ch. 2 - A truck covers 40.0 m in 8.50 s while uniformly...Ch. 2 - A speedboat increases its speed uniformly from vi...Ch. 2 - A Cessna aircraft has a liftoff speed of 120....Ch. 2 - An object moves with constant acceleration 4.00...Ch. 2 - In a test run, a certain car accelerates uniformly...Ch. 2 - A jet plane lands with a speed of 100 m/s and can...Ch. 2 - Speedy Sue, driving at 30.0 m/s, enters a one-lane...Ch. 2 - A record of travel along a straight path is as...Ch. 2 - A train is traveling down a straight track at 20...Ch. 2 - A car accelerates uniformly from rest to a speed...Ch. 2 - A car starts from rest and travels for 5.0 s with...Ch. 2 - A car starts from rest and travels for t1 seconds...Ch. 2 - In the Daytona 500 auto race, a Ford Thunderbird...Ch. 2 - A certain cable car in San Francisco can stop in...Ch. 2 - A hockey player is standing on his skates on a...Ch. 2 - A train 4.00 102 m long is moving on a straight...Ch. 2 - A ball is thrown vertically upward with a speed of...Ch. 2 - A ball is thrown directly downward with an initial...Ch. 2 - A certain freely falling object, released from...Ch. 2 - An attacker at the base of a castle wall 3.65 m...Ch. 2 - Traumatic brain injury such as concussion results...Ch. 2 - A small mailbag is released from a helicopter that...Ch. 2 - A tennis player tosses a tennis ball straight up...Ch. 2 - A package is dropped from a helicopter that is...Ch. 2 - A model rocket is launched straight upward with an...Ch. 2 - A baseball is hit so that it travels straight...Ch. 2 - A truck tractor pulls two trailers, one behind the...Ch. 2 - Colonel John P. Stapp, USAF, participated in...Ch. 2 - A bullet is fired through a board 10.0 cm thick in...Ch. 2 - A speedboat moving at 30.0 m/s approaches a...Ch. 2 - A student throws a set of keys vertically upward...Ch. 2 - A student throws a set of keys vertically upward...Ch. 2 - An insect called the froghopper (Philaenus...Ch. 2 - Prob. 62APCh. 2 - A ball is thrown upward from the ground with an...Ch. 2 - To pass a physical education class at a...Ch. 2 - In Chapter 5 we will define the center of mass of...Ch. 2 - Two students air on a balcony a distance h above...Ch. 2 - You drop a ball from a window on an upper floor of...Ch. 2 - The driver of a truck slams on the brakes when he...Ch. 2 - Emily challenges her husband, David, to catch a 1...Ch. 2 - A mountain climber stands at the top of a 50.0-m...Ch. 2 - An ice sled powered by a rocket engine sum from...Ch. 2 - In Bosnia, the ultimate test of a young nuns...Ch. 2 - Prob. 73APCh. 2 - A glider on an air track carries a flag of length ...Ch. 2 - A stuntman sitting on a tree limb wishes to drop...

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