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3.2 moles of HI(g) were heated in a sealed bulb at 444C till the equilibrium was reached .it's degree of hydrogen iodide ,hydrogen and iodine present at the equilibrium point an d determine the value of equilibrium constant for the reaction 2HI(g)_H2(g) I2(g).considering the volume of the container 1L.?
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3.2 moles of HI(g) were heated in a sealed bulb at 444C till the equil...
Change in Gibbs energy = 2.303 RT log k.
substituting the value of k and changebin gibbs energy to 0. you will get a quadrartic equation. On solving , you will get the amount dissociated, say x
it will be around 2.5.
concentration of hydrogen iodide will be around 0.7and the conc. of H2 andI2 will be 2.5.
Kc=9(approx.)
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3.2 moles of HI(g) were heated in a sealed bulb at 444C till the equilibrium was reached .it's degree of hydrogen iodide ,hydrogen and iodine present at the equilibrium point an d determine the value of equilibrium constant for the reaction 2HI(g)_H2(g) I2(g).considering the volume of the container 1L.?
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3.2 moles of HI(g) were heated in a sealed bulb at 444C till the equilibrium was reached .it's degree of hydrogen iodide ,hydrogen and iodine present at the equilibrium point an d determine the value of equilibrium constant for the reaction 2HI(g)_H2(g) I2(g).considering the volume of the container 1L.? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared according to the NEET exam syllabus. Information about 3.2 moles of HI(g) were heated in a sealed bulb at 444C till the equilibrium was reached .it's degree of hydrogen iodide ,hydrogen and iodine present at the equilibrium point an d determine the value of equilibrium constant for the reaction 2HI(g)_H2(g) I2(g).considering the volume of the container 1L.? covers all topics & solutions for NEET 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for 3.2 moles of HI(g) were heated in a sealed bulb at 444C till the equilibrium was reached .it's degree of hydrogen iodide ,hydrogen and iodine present at the equilibrium point an d determine the value of equilibrium constant for the reaction 2HI(g)_H2(g) I2(g).considering the volume of the container 1L.?.
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