1- Calculate the equilibrium concentration

  1. HCOOH(aq) <-----> H^+ (aq)+ HCOO^-(aq)The equilibrium constant (Ka) for Reaction 3 at 25 °C is 1.80 × 10−4 mol dm−3.
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  2. The equilibrium constant (Ka) for Reaction 3 at 25 °C is 1.80 × 10−4 mol dm−3. Calculate the equilibrium concentration of
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  3. Calculate the thiocyanate concentration at equilibrium if the irone (III) ion concentration is 0.23 M and the complex ion
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  4. Calculate the thiocyanate concentration at equilibrium if the irone (III) ion concentration is 0.23 M and the complex ion
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  5. Calculate the thiocyanate concentration at equilibrium if the irone (III) ion concentration is 0.23 M and the complex ion
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  6. calculate the concentration of the products of the following equilibrium when the equilibrium constant is 12.3 and the
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  7. A mixture consisting of 0.150 M N2(g) and 0.612 M H2(g) reacts and then reaches equilibrium according to the equation:N2(g) +
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  8. 2 HI(g)--><--H2(g) + I2(g)When a sufficiently large sample of HI(g) is introduced into an evacuated vessel at 643 K, the
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  9. The initial concentration for the compounds involved in the reaction shown were determine to be [CO]=1.80, [CL2]=9.70;
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  10. The initial concentration for the compounds involved in the reaction displayed were determined to be [NO2(g)] = 1.243 mol/L,
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    2. Ulanda asked by Ulanda
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