Vector Mechanics For Engineers
Vector Mechanics For Engineers
12th Edition
ISBN: 9781259977305
Author: BEER, Ferdinand P. (ferdinand Pierre), Johnston, E. Russell (elwood Russell), Cornwell, Phillip J., SELF, Brian P.
Publisher: Mcgraw-hill Education,
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Textbook Question
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Chapter 14.3, Problem 14.100P

A rocket weighs 2600 lb. including 2200 lb of fuel, which is consumed at the rate of 25 lb/s and ejected with a relative velocity of 13.000 ft/s. Knowing that the rocket is fired vertically from the ground, determine (a) its acceleration as it is fired, (b) its acceleration as the last particle of fuel is being consumed, (c) the altitude at which all the fuel has been consumed. (d) the velocity of the rocket at that time.

Expert Solution
Check Mark
To determine

The acceleration as it is fired of the rocket.

Answer to Problem 14.100P

The value of acceleration is a=92.8ft/s2

Explanation of Solution

The weight of the rocket as:

WR=mg

Substitute WR=2600Ibg=32.2ft/s2 we get

2600Ib=m(32.2ft/s2)m=260032.2=80.75Ib.s2/ft

Substitute required values, we get:

a=10.088×10380.7532.2ft/s2

=124.9332.2=92.8ft/s2

Expert Solution
Check Mark
To determine

The acceleration as the last particle of fuel is consumed.

Answer to Problem 14.100P

The value of acceleration as the last particle of fuel is a=780ft/s2.

Explanation of Solution

Find the weight of the rocket the condition is fuel is consumed.

Wo=WRWF

Substituting all required values, we get:

Wo=2600Ib2200Ib=400Ib

The weight of the rocket is:

Wo=mg400Ib=m(32.2)m=40032.2m=12.422Ib.s2/ft

Substitute all the values, we get:

a=Pmga=10.088×103Ib12.422Ib.s2/ft32.2ft/s2=812.232.2=779.9ft/s2=780ft/s2

Expert Solution
Check Mark
To determine

The altitude at which all the fuel has been consumed.

Answer to Problem 14.100P

The value of altitude at which all the fuel has been consumed is h=119.3mi.

Explanation of Solution

Formulate the relation for final velocity of the rocket is:

v=uln(momo(qt))gtdydt=uln(momo(qt))gt(1)dy=[uln(momo(qt))gt]dt

Consider the relation for the altitude of the rocket:

h=dy

Here dy=[uln(momo(qt))gt]dt

h=0t([uln(momo(qt))gt]dt)=u0tlnmoqtmodt12gt2(2)

Here z=moqtmo

So,

dz=qmodtdt=moqdz

Substitute these values, we get:

h=u0tlnz(moqdz)12gt2=mouqlnzdz12gt2=mouq[(zlnzz)]zoz12gt2

Substitute z=moqtmo in equation 2, we get:

h=mouq[moqtmo(lnmoqtmo1)momo(lnmomo1)]12gt2=mouq[(1qmot)×lnmoqtmo(1qmot)momo(lnmomo1)]12gt2

=mouq[lnmoqtmo(qmot×lnmoqtmo)+qmot]12gt2=(mouq×lnmoqtmo)(mouq×qmot×lnmoqtmo)+(mouq×qmot)12gt2

=(mouq×lnmoqtmo)(ut×lnmoqtmo)+(ut)12gt2(3)

Find the time t by using below formula, we get:

t=Wfqt=220025=88s

Substitute all the values, we get:

h=ut+(mouqut)lnmoqtmo12gt2=(13000×88)+[(2600×1300025(13000×88))ln260022002600]12(32.2)(88)2=1144000389334.85124678.4=629986.75ft×1mile5280fth=119.3mi

Expert Solution
Check Mark
To determine

The velocity of the rocket.

Answer to Problem 14.100P

The value of velocity at that time is V=14660mi/h.

Explanation of Solution

Substitute all the required values in equation 1, we get:

v=13000ln(260026002200)(32.2)(88)=21500ft/s×1mile5280ft×3600s1hr=14660mi/h

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Chapter 14 Solutions

Vector Mechanics For Engineers

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When...Ch. 14.3 - A toy car is propelled by water that squirts from...Ch. 14.3 - A toy car is propelled by water that squirts from...Ch. 14.3 - The main propulsion system of a new space...Ch. 14.3 - The main propulsion system of a new space...Ch. 14.3 - A rocket sled bums fuel at the constant rate of...Ch. 14.3 - A space vehicle describing a circular orbit about...Ch. 14.3 - A 540-kg spacecraft is mounted on top of a rocket...Ch. 14.3 - The rocket used to launch the 540-kg spacecraft of...Ch. 14.3 - The weight of a spacecraft, including fuel, is...Ch. 14.3 - The rocket engines of a spacecraft are fired to...Ch. 14.3 - Determine the distance traveled by the spacecraft...Ch. 14.3 - A rocket weighs 2600 lb. including 2200 lb of...Ch. 14.3 - Determine the altitude reached by the spacecraft...Ch. 14.3 - For the spacecraft and the two-stage launching...Ch. 14.3 - In a jet airplane, the kinetic energy imparted to...Ch. 14.3 - In a rocket, the kinetic energy imparted to the...Ch. 14 - Three identical cars are being unloaded from an...Ch. 14 - A 50-kg mother and her 26-kg son are sledding down...Ch. 14 - An 80-Mg railroad engine A coasting at 6.5 km/h...Ch. 14 - In a game of pool, ball A is moving with a...Ch. 14 - Mass C, which has a mass of 4 kg, is suspended...Ch. 14 - A 15-lb block B is at rest and a spring of...Ch. 14 - A 6000-kg dump truck has a 1500-kg stone block...Ch. 14 - For the ceiling-mounted fan shown, determine the...Ch. 14 - An airplane with a weight W and a total wing span...Ch. 14 - The final component of a conveyor system receives...Ch. 14 - A garden sprinkler has four rotating arms, each of...Ch. 14 - A chain of length I and mass m falls through a...
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