2. When hydrogen gas reacts with iodine gas at elevated temperatures, the following equilibrium is established: H,(g) + I(g) 2 HI(g) A student measured the equilibrium constant as 59.3 at 400°C. If...


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2. When hydrogen gas reacts with iodine gas at elevated temperatures, the following equilibrium is<br>established:<br>H,(g) + I(g) 2 HI(g)<br>A student measured the equilibrium constant as 59.3 at 400°C. If one trial begins with a mixture<br>that includes 0.050 M hydrogen and 0.050 M iodine, what will be the equilibrium concentrations of<br>reactants and products?<br>a. Show a mole balance table for the given chemical reaction. Obtain the chemical equilibrium<br>constant expression. Show the results.<br>b. Create a function file. Use command window to execute this function file. Issue matlab<br>commands to calculate the equilibrium concentrations of the products and reactants. Show the<br>results.<br>c. Create function file and m-file using global command that calculate and display the equilibrium<br>concentrations of the products and reactants. Run the files and show the results.<br>

Extracted text: 2. When hydrogen gas reacts with iodine gas at elevated temperatures, the following equilibrium is established: H,(g) + I(g) 2 HI(g) A student measured the equilibrium constant as 59.3 at 400°C. If one trial begins with a mixture that includes 0.050 M hydrogen and 0.050 M iodine, what will be the equilibrium concentrations of reactants and products? a. Show a mole balance table for the given chemical reaction. Obtain the chemical equilibrium constant expression. Show the results. b. Create a function file. Use command window to execute this function file. Issue matlab commands to calculate the equilibrium concentrations of the products and reactants. Show the results. c. Create function file and m-file using global command that calculate and display the equilibrium concentrations of the products and reactants. Run the files and show the results.

Jun 06, 2022
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