Convert atomic unit of energy to celsius heat unit

Learn how to convert 1 atomic unit of energy to celsius heat unit step by step.

Calculation Breakdown

Set up the equation
\(1.0\left(atomic \text{ } unit \text{ } of \text{ } energy\right)={\color{rgb(20,165,174)} x}\left(celsius \text{ } heat \text{ } unit\right)\)
Define the base values of the selected units in relation to the SI unit \(\left(joule\right)\)
\(\text{Left side: 1.0 } \left(atomic \text{ } unit \text{ } of \text{ } energy\right) = {\color{rgb(89,182,91)} 4.359744 \times 10^{-18}\left(joule\right)} = {\color{rgb(89,182,91)} 4.359744 \times 10^{-18}\left(J\right)}\)
\(\text{Right side: 1.0 } \left(celsius \text{ } heat \text{ } unit\right) = {\color{rgb(125,164,120)} 1899.100534716\left(joule\right)} = {\color{rgb(125,164,120)} 1899.100534716\left(J\right)}\)
Insert known values into the conversion equation to determine \({\color{rgb(20,165,174)} x}\)
\(1.0\left(atomic \text{ } unit \text{ } of \text{ } energy\right)={\color{rgb(20,165,174)} x}\left(celsius \text{ } heat \text{ } unit\right)\)
\(\text{Insert known values } =>\)
\(1.0 \times {\color{rgb(89,182,91)} 4.359744 \times 10^{-18}} \times {\color{rgb(89,182,91)} \left(joule\right)} = {\color{rgb(20,165,174)} x} \times {\color{rgb(125,164,120)} {\color{rgb(125,164,120)} 1899.100534716}} \times {\color{rgb(125,164,120)} \left(joule\right)}\)
\(\text{Or}\)
\(1.0 \cdot {\color{rgb(89,182,91)} 4.359744 \times 10^{-18}} \cdot {\color{rgb(89,182,91)} \left(J\right)} = {\color{rgb(20,165,174)} x} \cdot {\color{rgb(125,164,120)} 1899.100534716} \cdot {\color{rgb(125,164,120)} \left(J\right)}\)
\(\text{Cancel SI units}\)
\(1.0 \times {\color{rgb(89,182,91)} 4.359744 \times 10^{-18}} \cdot {\color{rgb(89,182,91)} \cancel{\left(J\right)}} = {\color{rgb(20,165,174)} x} \times {\color{rgb(125,164,120)} 1899.100534716} \times {\color{rgb(125,164,120)} \cancel{\left(J\right)}}\)
\(\text{Conversion Equation}\)
\(4.359744 \times 10^{-18} = {\color{rgb(20,165,174)} x} \times 1899.100534716\)
Switch sides
\({\color{rgb(20,165,174)} x} \times 1899.100534716 = 4.359744 \times 10^{-18}\)
Isolate \({\color{rgb(20,165,174)} x}\)
Multiply both sides by \(\left(\dfrac{1.0}{1899.100534716}\right)\)
\({\color{rgb(20,165,174)} x} \times 1899.100534716 \times \dfrac{1.0}{1899.100534716} = 4.359744 \times 10^{-18} \times \dfrac{1.0}{1899.100534716}\)
\(\text{Cancel}\)
\({\color{rgb(20,165,174)} x} \times {\color{rgb(255,204,153)} \cancel{1899.100534716}} \times \dfrac{1.0}{{\color{rgb(255,204,153)} \cancel{1899.100534716}}} = 4.359744 \times 10^{-18} \times \dfrac{1.0}{1899.100534716}\)
\(\text{Simplify}\)
\({\color{rgb(20,165,174)} x} = \dfrac{4.359744 \times 10^{-18}}{1899.100534716}\)
Solve \({\color{rgb(20,165,174)} x}\)
\({\color{rgb(20,165,174)} x}\approx2.2956888908 \times 10^{-21}\approx2.2957 \times 10^{-21}\)
\(\text{Conversion Equation}\)
\(1.0\left(atomic \text{ } unit \text{ } of \text{ } energy\right)\approx{\color{rgb(20,165,174)} 2.2957 \times 10^{-21}}\left(celsius \text{ } heat \text{ } unit\right)\)

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