Oct 9, 2020 · For the reaction : 2HI(g) ⇌ H2 (g)+ I2 (g), the degree of dissociated (α) of HI(g) is related to equilibrium constant Kp by the expression: asked Jan 6, 2020 in Chemistry by Mousam (50.2k points) jee; jee mains; Welcome to Sarthaks eConnect: A unique platform where students can interact with teachers/experts/students to get solutions to ...
Читать далееThe 2016 Toyota Tacoma is fitted with the standard setup you'd find in any truck that wants to go play in the dirt. There's two-wheel-drive and both four-wheel-high and four-wheel-drive-low.
Читать далееJun 16, 2020 · If you search for "standard enthalpy of formation hydrogen iodide", you get positive value $\pu{26.5 kJ/mol}$, what means the reaction is endothermic, as by convention, the values for elements in their standard state is zero.. The other one is strongly endothermic, what you realize, if you search the same for nitric oxide.
Читать далее]A.2HI(g)⇌H 2 (g)+I 2 (g), H= H 1 + H 2,A; B.ⅰHI,H 2 ,∆H 1 ,B;
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Читать далееWhich statement is true if the following reaction is done at 25 oC? H2 (g) + I2(g) 2HI(g) ∆Hfo, kJ / mol 0 0 26.5 ∆Sfo, J / mol•K 130.6 260.6 206.5 a). The reaction is spontaneous; ∆H0 is favorable while ∆S0 is not. b). The reaction is spontaneous; ∆S0 is favorable while ∆H0 is not. c). The reaction is spontaneous; both ∆H0 and ...
Читать далееQuestion: Be sure to answer all parts. Kc for the reaction of hydrogen and iodine to produce hydrogen iodide. H2(g) + I2(g) ⇌ 2HI(g) is 54.3 at 430°C. Calculate the equilibrium concentrations of H2, I2, and HI at 430°C if the initial concentrations are [H2] = [I2] = 0 M, and [HI] = 0.313 M.
Читать далееThe equilibrium constant, Kp , for the reaction H2(g) + I2(g) 2HI(g) is 55.2 at 425°C. A rigid cylinder at that temperature contains 0.127 atm of hydrogen, 0.134 atm of iodine, and 1.055 atm of hydrogen iodide. Is the system at equilibrium? There are 2 steps to solve this one.
Читать далееFeb 11, 2020 · At 700 K the equilibrium constant for the reaction: H 2 (g) + I 2 (g) ⇌ 2HI(g). is 54.8. If 0.5 mol-1 of HI(g) is present at equilibrium at 700 K, what are the concentration of H 2 (g) and I 2 (g) assuming that we initially started with HI(g) and allowed it to reach equilibrium at 700 K?
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