Use the figure below to answer the following questions. a. Derive the relationship between °C and °X. b. If the temperature outside is 22.0°C, what is the temperature in units of °X? c. Convert 58.0°X to units of °C, K, and °F.
Use the figure below to answer the following questions. a. Derive the relationship between °C and °X. b. If the temperature outside is 22.0°C, what is the temperature in units of °X? c. Convert 58.0°X to units of °C, K, and °F.
Use the figure below to answer the following questions.
a. Derive the relationship between °C and °X.
b. If the temperature outside is 22.0°C, what is the temperature in units of °X?
c. Convert 58.0°X to units of °C, K, and °F.
(a)
Expert Solution
Interpretation Introduction
Interpretation:
The relationship between
°C and
°X should be derived and the given
°C should be converted in to
°X and the given
°X should be converted in to degree Celsius, Kelvin and Fahrenheit.
Concept introduction:
Conversion of temperature units in between degree Celsius, Kelvin and Fahrenheit are given by
Conversion of oFintooC:oC=(oF-32oF)×5oC9oFConversion of oCintooF:oF=(oC×9oF5oC)+32oFConversion of oCintoK:K = °C + 273.15
Answer to Problem 63E
The relationship between
°C and
°X temperatures is,
°X=(514×°C)+5014
Explanation of Solution
To derive the relationship between°Cand°X temperatures
Given,
Fig.1
In the given Fig.1,
In the given Fig.1, in thermometer (1) temperature difference is
-10to130=140°C
In the given Fig.1, in thermometer (2) temperature difference is
0to50=50°X
Hence equations for the inter conversion of
°X and
°C are,
Temperature
°C in to
°X is,
=50140=54°X=514(°C)+5014
Temperature
°X in to
°C is,
°C=145°X-5014°C=145°X-10
(b)
Expert Solution
Interpretation Introduction
Interpretation:
The relationship between
°C and
°X should be derived and the given
°C should be converted in to
°X and the given
°X should be converted in to degree Celsius, Kelvin and Fahrenheit.
Concept introduction:
Conversion of temperature units in between degree Celsius, Kelvin and Fahrenheit are given by
Conversion of oFintooC:oC=(oF-32oF)×5oC9oFConversion of oCintooF:oF=(oC×9oF5oC)+32oFConversion of oCintoK:K = °C + 273.15
Answer to Problem 63E
The temperature
22°C is
4.2 °X
Explanation of Solution
To convert the given temperature°Xin to°C
°X=514(°C)−5014=514(22°C)−5014=4.2°X
Using above derived equation and substitute given temperature in Fig.122°C to give a temperature in
°C
(c)
Expert Solution
Interpretation Introduction
Interpretation:
The relationship between
°C and
°X should be derived and the given
°C should be converted in to
°X and the given
°X should be converted in to degree Celsius, Kelvin and Fahrenheit.
Concept introduction:
Conversion of temperature units in between degree Celsius, Kelvin and Fahrenheit are given by
Conversion of oFintooC:oC=(oF-32oF)×5oC9oFConversion of oCintooF:oF=(oC×9oF5oC)+32oFConversion of oCintoK:K = °C + 273.15
Answer to Problem 63E
The given
58.0°X converted in to degree Celsius, Kelvin and Fahrenheit are,
(i)52.4°C
(ii)452.22k
(iii)306.32°F
Explanation of Solution
The convert the given temperature58.0°Xin to Celsius, Kelvin and Fahrenheit
Using above derived equation and plugged the given values of given and calculated temperature to convert the temperatures in Kelvin and Fahrenheit unites.
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Deducing the reactants of a Diels-Alder reaction
n the molecule on the right-hand side of this organic reaction be made in good yield from no more than two reactants, in one
step, by moderately heating the reactants?
?
Δ
• If your answer is yes, then draw the reactant or reactants in the drawing area below. You can draw the reactants in any
arrangement you like.
• If your answer is no, check the box under the drawing area instead.
Explanation Check
Click and drag to start drawing a structure.
>
Predict the major products of the following organic reaction:
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Some important notes:
A
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• Draw the major product, or products, of the reaction in the drawing area below.
• If there aren't any products, because no reaction will take place, check the box below the drawing area instead.
• Be sure to use wedge and dash bonds when necessary, for example to distinguish between major products that are
enantiomers.
Explanation
Check
Click and drag to start drawing a structure.
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