3. Give the relationship between the rate of decomposition of gaseous iodine and the ratio of formation of hydrogen iodide for the reaction H2(g) + I2(g) → 2HI(g) 4. The following equation shows the decomposition of SO2C12 with a rate constant, k = 5.09 x 104 s' at 320 K : SO:Ch(g) → SO2(g) + Cl2(g) State the order of the reaction. Sketch a graph of the reaction rate versus the concentration of SO2C2. 5. The rate of a reaction increases eight-fold when the concentration of one of the reactants is doubled. Determine the order of the reaction with respect to that reactant.

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Chapter1: Chemical Foundations
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3. Give the relationship between the rate of decomposition of gaseous iodine and the ratio
of formation of hydrogen iodide for the reaction
H2(g) + I2(g) → 2HI(g)
4. The following equation shows the decomposition of SO2C12 with a rate constant, k =
5.09 x 104 s1 at 320 K :
SO2C2(g) → SO2(g)+ Cl2(g)
State the order of the reaction. Sketch a graph of the reaction rate versus the
concentration of SO2Cl2.
5. The rate of a reaction increases eight-fold when the concentration of one of the
reactants is doubled. Determine the order of the reaction with respect to that reactant.
[3]
Transcribed Image Text:3. Give the relationship between the rate of decomposition of gaseous iodine and the ratio of formation of hydrogen iodide for the reaction H2(g) + I2(g) → 2HI(g) 4. The following equation shows the decomposition of SO2C12 with a rate constant, k = 5.09 x 104 s1 at 320 K : SO2C2(g) → SO2(g)+ Cl2(g) State the order of the reaction. Sketch a graph of the reaction rate versus the concentration of SO2Cl2. 5. The rate of a reaction increases eight-fold when the concentration of one of the reactants is doubled. Determine the order of the reaction with respect to that reactant. [3]
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