Chemistry: Atoms First
Chemistry: Atoms First
2nd Edition
ISBN: 9780073511184
Author: Julia Burdge, Jason Overby Professor
Publisher: McGraw-Hill Education
Question
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Chapter 1, Problem 1.113QP

a)

Interpretation:

Interpretation Introduction

It should be determined the temperature at which the Celsius and Fahrenheit values are numerically equal

Concept introduction:

  • Conversional formula from Celsius to Fahrenheit,

Fo=(o9oF5oC)+32Fo

  • Conversional formula from Fahrenheit to Celsius

    oC=(Fo32Fo)×5oC9oF

  • Conversional formula from Celsius to Kelvin,

K=C+273.15

To determine: The temperature at which the Celsius and Fahrenheit values are numerically equal

a)

Interpretation:

Expert Solution
Check Mark

Explanation of Solution

Explanation

The conversional formula from Celsius to Fahrenheit is

Fo=(o9oF5oC)+32Fo

It is needed to determine the temperature at which the Celsius and Fahrenheit values are numerically equal That is °C=°F.

To determine the temperature that numerically equal to Celsius and Fahrenheit values, it is needed to replace °F with °C in the above equation. That is,

°C=(o95)+32°F°C=95oC+32°C-95oC=32(1-95)°C=32-45°C=32°C=-32×54=-40°

So, it can be conclude that -40°C=-40°F

b)

Interpretation Introduction

Interpretation:

It should be determined the temperature at which the Kelvin and Fahrenheit values are numerically equal

Concept introduction:

  • Conversional formula from Celsius to Fahrenheit,

Fo=(o9oF5oC)+32Fo

  • Conversional formula from Fahrenheit to Celsius

    oC=(Fo32Fo)×5oC9oF

  • Conversional formula from Celsius to Kelvin,

K=C+273.15

To determine: The temperature at which the Kelvin and Fahrenheit values are numerically equal

b)

Expert Solution
Check Mark

Explanation of Solution

Explanation

Conversional formula from Celsius to Fahrenheit is

Fo=(o9oF5oC)+32Fo

Conversional formula from Celsius to Kelvin is

K=C+273.15

It is needed to determine the temperature at which Kelvin and Fahrenheit values are numerically equal That is K=°F.

To determine the numerically equal temperature it is needed to set the conversion factors equal to one another. Then solve for °C which is the variable common to both equations. This value converted to both °F and K

That is,

Fo=(o9oF5oC)+32Fo

K=C+273.15

If K=°F

The above conversion equations becomes,

(o95)+32=°C+273.151.8°C+32=°C+273.150.8°C=241.15°C=301.44

This value should be used to solve Kor°F

K=301.44°C+273.15=574.59KFo=(301.44o9oF5oC)+32Fo=574.59oF

That is, 574.59K=574.59°F

C)

Interpretation Introduction

Interpretation:

It should be checked that, is there any temperature at which the Celsius and Kelvin values are numerically equal

Concept introduction:

  • Conversional formula from Celsius to Fahrenheit,

Fo=(o9oF5oC)+32Fo

  • Conversional formula from Fahrenheit to Celsius

    oC=(Fo32Fo)×5oC9oF

  • Conversional formula from Celsius to Kelvin,

K=C+273.15

To check: Is there any temperature at which the Celsius and Kelvin values are numerically equal

C)

Expert Solution
Check Mark

Explanation of Solution

Conversional formula from Celsius to Kelvin is

K=C+273.15

The values of Kelvin are always equal to a value that is 273.15, which is greater than the Celsius value. So there is no temperature at which the values are numerically equal

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Chapter 1 Solutions

Chemistry: Atoms First

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