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The formation of ammonia by Haber's proc...

The formation of ammonia by Haber's process is favoured by ………. pressure.

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To determine the pressure conditions that favor the formation of ammonia in the Haber process, we can follow these steps: ### Step-by-Step Solution: 1. **Understand the Haber Process**: The Haber process involves the reaction of nitrogen gas (N₂) and hydrogen gas (H₂) to form ammonia (NH₃). The balanced chemical equation for this reaction is: \[ N_2(g) + 3H_2(g) \rightleftharpoons 2NH_3(g) \] ...
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The formation of anion from a neutral atom X is favoured by:

N_(2)(g)+3H_(2)(g) hArr 2NH_(3)(g), DeltaH^(ɵ)=-22.4 kJ The pressure inside the chamber is 100 atm and temperature at 300 K The preparation of ammonia by Haber's process is an exothermic reaction. If the preparation follows the following temperature-pressure relationship for its % yield. Then for temperature T_(1), T_(2) and T_(3) the correct option is:

Match the following : {:("","List-I","List_II",""),((P),"Formation of ammonia by haber's process", (1),"increase in temperature"),((Q),"Formation of" SO_3 "in contact process for manufacture of " H_2SO_4,(2),"Decrease in temperature"),((R ),"Formation of NO in Birk-land Eyde process for manufacture of "HNO_3,(3),"Decrease in pressure"),((S),"Formation of" NO_2(g) "by following reaction" NO(g)+O_3hArr NO_2(g)+O_2(g)+200KJ,(4),"increase in pressure"):}

In the industrial preparation of ammonia by Haber process from nitrogen and hydrogen, the reaction is carried in the temperature range of 450^@C to 500^@C and in a pressure range of 200 atm to 300 atm. Now answer the following question. How is ammonia separated from unreacted nitrogen and hydrogen?

In the industrial preparation of ammonia by Haber process from nitrogen and hydrogen, the reaction is carried in the temperature range of 450^@C to 500^@C and in a pressure range of 200 atm to 300 atm. Now answer the following question. The reaction is not carried at very high pressure. Give one reason.

In the industrial preparation of ammonia by Haber process from nitrogen and hydrogen, the reaction is carried in the temperature range of 450^@C to 500^@C and in a pressure range of 200 atm to 300 atm. Now answer the following question. The reaction is not carried out at a lower temperature. Give one reason.

In the industrial preparation of ammonia by Haber process from nitrogen and hydrogen, the reaction is carried in the temperature range of 450^@C to 500^@C and in a pressure range of 200 atm to 300 atm. Now answer the following question. What is the name of the catalyst used in the reaction?

During synthesis of ammonia by Haber's process, 'CO' acts is

Explain why high pressure is used in the manufacture of ammonia by Haber's process. State the law or principle used. ""^(**"**)

Industrially, ammonia is obtained by direct combination between nitrogen and hydrogen. Is the formation of ammonia promoted by the use of high pressure or low pressure?

CENGAGE CHEMISTRY ENGLISH-CHEMICAL EQUILIBRIUM-Exercises (Fill In The Blanks)
  1. If the activation energies of the forward and backward reactions of a ...

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  2. If the value of equilibrium constant is large, ……….. Are more stable.

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  3. The magnitude of equilibrium constant is a measure of ………. to which th...

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  4. Le Chatelier's principle is applicable to both …………. and …………. equilib...

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  5. Low temperature is favourable for ……….. reactions.

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  6. Low pressure is favourable for those reversible reactions in which the...

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  7. If the temperature of the system at equilibrium is increased, the equi...

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  8. An endothermic reaction which proceeds with decrease in volume will gi...

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  9. The formation of ammonia by Haber's process is favoured by ………. pressu...

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  10. Low pressure favoures those reactions which occur with ……….. in the nu...

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  11. For a system of gases A, B, C, and D at equilibrium A+2B hArr C+3D, th...

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  12. A+B hArr C+D If initially the concentration of A and B are both equa...

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  13. For reaction PCl(3)(g)+Cl(2)(g) hArr PCl(5)(g), K(c) is 30 at 300 K. T...

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  14. The equilibrium constant for the reaction CaCO(3)(s) hArr CaO(s)+CO(...

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  15. The vapour density of Pcl(5) is 104.16 but when heated to 230^(@)C, it...

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  16. In line kilns, the following reaction, CaCO(3)(s) hArr CaO(s)+CO(2)(...

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  17. The degree of dissociation of PCl(5) will be more at ………. pressure.

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  18. When the system 2HI(g) hArr H(2)(g)+I(2)(g) is at equilibrium, inert g...

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  19. When a product is removed from the system which is at equilibrium ………....

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  20. The melting of ice is favoured by ………….. pressure and ………….. temperatu...

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