GENERAL CHEMISTRY ACHIEVE ACCESS W/BOOK
GENERAL CHEMISTRY ACHIEVE ACCESS W/BOOK
4th Edition
ISBN: 9781319405212
Author: McQuarrie
Publisher: MAC HIGHER
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Chapter 1, Problem 1.22P
Interpretation Introduction

Interpretation:

Maximum height the car with mass of 1200kg running with speed of 89kmh1 can get over has to be calculated.

Concept Introduction:

Energy that is associated with a moving object is known as kinetic energy.  The energy that is possessed by an object due to its location that is related to a specific reference is known as potential energy.  Kinetic energy of any object is expressed by the equation shown below.

    Ek=12mv2

Where Ek is kinetic energy, m is the mass of object, and v is the velocity of object.

Potential energy for an object that is located above the ground level can be expressed by an equation given below.

    Ep=mgh

Where Ep is the potential energy, g is the proportionality constant that is equal to 9.81ms2, m is mass of object and h is the height from ground level.

Expert Solution & Answer
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Explanation of Solution

The car has a mass of 1200kg.  Velocity at which the car runs is 89kmh1.  Velocity can be converted into ms1 as shown below using conversion factors.

    v=89kmh1=89kmh1×1h60min×1min60s×1000m1km=890003600ms1=24.72ms1=25ms1

Kinetic energy of the car is calculated as shown below.

    Ek=12mv2=12(1200kg)(25ms1)2=375000kgm2s2=375000J (1kgm2s2=1J)=375×103J=375kJ

Total energy at initial level is the sum of kinetic energy and potential energy.  This can be calculated as shown.

    Etotal(initial)=Ek+Ep=375kJ+0=375kJ

Total energy at apex is the sum of kinetic energy and potential energy.  This can be calculated as shown.

    Etotal(apex)=Ek+Ep=0+375kJ=375kJ

Maximum height the car can reach is calculated as shown below.

    Ep=mgh375kJ=1200kg×9.8ms2×hh=375kJ1200kg×9.8ms2=375×103 kgm2s211760kgms2=0.0318×103m=31.8m=32m

Therefore, the height the car can reach is calculated as 32m.

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Chapter 1 Solutions

GENERAL CHEMISTRY ACHIEVE ACCESS W/BOOK

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