Chemistry (9-1) - 0971 CIE

Reversible Reactions And Equilibrium

Gbogbo ọrọ náà

Most reactions seem to run one way and stop, but a surprising number can go forwards and backwards. Heat blue hydrated copper(II) sulfate and it turns white; add water and the blue returns. That single demonstration is the gateway to one of chemistry's most powerful ideas: dynamic equilibrium, and the industrial processes that depend on it.

In this lesson you will meet reversible reactions and the special arrow that marks them, learn what it means for a closed system to reach equilibrium, and see how changing temperature, pressure and concentration shift the balance. You will then apply all of this to the Haber process for ammonia and the Contact process for sulfuric acid.

Ebumnobi

  1. State that some chemical reactions are reversible as shown by the symbol ⇌.
  2. Describe how changing the conditions can change the direction of a reversible reaction for: (a) the effect of heat on hydrated compounds (b) the addition of water to anhydrous compounds limited to copper(II) sulfate and cobalt(II) chloride.
  3. [Supplement] State that a reversible reaction in a closed system is at equilibrium when: (a) the rate of the forward reaction is equal to the rate of the reverse reaction (b) the concentrations of reactants and products are no longer changing.
  4. [Supplement] Predict and explain, for a reversible reaction, how the position of equilibrium is affected by: (a) changing temperature (b) changing pressure (c) changing concentration (d) using a catalyst using information provided.
  5. [Supplement] State the symbol equation for the production of ammonia in the Haber process, N (g) + 3H (g) 2NH (g) 2 2 3.
  6. [Supplement] State the sources of the hydrogen (methane) ⇌ and nitrogen (air) in the Haber process.
  7. [Supplement] State the typical conditions in the Haber process as 450 °C, 20 000 kPa / 200 atm and an iron catalyst.
  8. [Supplement] State the symbol equation for the conversion of sulfur dioxide to sulfur trioxide in the Contact process, 2SO (g) + O (g) 2SO (g) 2 2 3.
  9. [Supplement] State the sources of the sulfur dioxide (burning ⇌ sulfur or roasting sulfide ores) and oxygen (air) in the Contact process.
  10. [Supplement] State the typical conditions for the conversion of sulfur dioxide to sulfur trioxide in the Contact process as 450 °C, 200 kPa / 2 atm and a vanadium(V) oxide catalyst.
  11. [Supplement] Explain, in terms of rate of reaction and position of equilibrium, why the typical conditions stated are used in the Haber process and in the Contact process, including safety considerations and economics.

Akọmọ Ojú-ẹkọ

Two of the world's most important industrial reactions, making ammonia for fertilisers and making sulfuric acid, are reversible. Choosing the right conditions to get a good yield at an acceptable rate and cost is a real-world balancing act, and it is examined in detail. Understanding equilibrium turns these processes from facts to memorise into ideas you can reason about.

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Ayẹwo Ẹkọ

Ekele diri gi maka imecha ihe karịrị na Reversible Reactions And Equilibrium. Ugbu a na ị na-enyochakwa isi echiche na echiche ndị dị mkpa, ọ bụ oge iji nwalee ihe ị ma. Ngwa a na-enye ụdị ajụjụ ọmụmụ dị iche iche emebere iji kwado nghọta gị wee nyere gị aka ịmata otú ị ghọtara ihe ndị a kụziri.

Ị ga-ahụ ngwakọta nke ụdị ajụjụ dị iche iche, gụnyere ajụjụ chọrọ ịhọrọ otu n’ime ọtụtụ azịza, ajụjụ chọrọ mkpirisi azịza, na ajụjụ ede ede. A na-arụpụta ajụjụ ọ bụla nke ọma iji nwalee akụkụ dị iche iche nke ihe ọmụma gị na nkà nke ịtụgharị uche.

Jiri akụkụ a nke nyocha ka ohere iji kụziere ihe ị matara banyere isiokwu ahụ ma chọpụta ebe ọ bụla ị nwere ike ịchọ ọmụmụ ihe ọzọ. Ekwela ka nsogbu ọ bụla ị na-eche ihu mee ka ị daa mba; kama, lee ha anya dị ka ohere maka ịzụlite onwe gị na imeziwanye.

  1. Which symbol shows that a reaction is reversible? A. -> B. = C. the double arrow (reversible) symbol D. + Answer: C
  2. Hydrated copper(II) sulfate is: A. white B. blue C. pink D. green Answer: B
  3. At dynamic equilibrium in a closed system: A. the reaction has stopped B. only the forward reaction occurs C. forward and reverse rates are equal D. concentrations keep rising Answer: C
  4. The typical conditions for the Haber process are: A. 450 C, 200 kPa, vanadium(V) oxide B. 450 C, 20 000 kPa, iron C. 25 C, 100 kPa, platinum D. 1000 C, 20 000 kPa, nickel Answer: B
  5. Adding a catalyst to a reversible reaction at equilibrium: A. increases the yield of product B. shifts equilibrium to the right C. does not change the position of equilibrium D. stops the reverse reaction Answer: C

Ọ dị na ngwa Green Bridge

Budata ngwa Green Bridge CBT na ekwentị maọbụ kọmputa gị iji nweta akwụkwọ ndụmọdụ zuru oke, ajụjụ mmụta, na ndị ọzọ.

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Ọ dị na ngwa Green Bridge

Budata ngwa Green Bridge CBT na ekwentị maọbụ kọmputa gị iji nweta akwụkwọ ndụmọdụ zuru oke, ajụjụ mmụta, na ndị ọzọ.

Akwụkwọ ndụmọdụ zuru oke nwere eserese
Onye inyeaka mmụta AI
Mụọ n'ụzọ na-enweghị ịntaneti, oge ọbụla, ebe ọbụla
Ọ dị na Android, Windows, macOS, na Linux

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