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Nitrogen and hydrogen react to form ammo...

Nitrogen and hydrogen react to form ammonia according to the reaction:
`N_(2)(g)+3H_(2)(g)to2NH_(3)(g)`
If 1000 g `H_(2)` react with 2000g of `N_(2)`
(i) Identify the limiting reagent.
(ii) Calculate the mass of ammonia `(NH_(3))` which will be formed.

Answer

Step by step text solution for Nitrogen and hydrogen react to form ammonia according to the reaction: N_(2)(g)+3H_(2)(g)to2NH_(3)(g) If 1000 g H_(2) react with 2000g of N_(2) (i) Identify the limiting reagent. (ii) Calculate the mass of ammonia (NH_(3)) which will be formed. by CHEMISTRY experts to help you in doubts & scoring excellent marks in Class 11 exams.

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For the reaction 2N_(2) + 3H_(2)(g) what is the order?

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Knowledge Check

  • For the reaction : CO(g)+2H_(2)(g)hArr CH_(3)OH(g)

    A
    `K_(p)=K_(c )`
    B
    `K_(p)gt K_(c )`
    C
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    D
    `K_(c ) = 0` but `K_(p) ne 0`
  • For the reaction : 2 NH_(3)(g) rarr N_(2)(g) + 3 H_(2)(g)

    A
    `q_(p) = (q_(v))^(2)`
    B
    `q_(p) = q_(v) - 2 RT`
    C
    `q_(p) = q_(v) + 2 RT`
    D
    `q_(p) = 2 q_(v) - R`.
  • Hydrogen and nitrogen react to produce ammonia according to the equation: 3H_2(g)+N_2(g)rarr2NH_3(g) What amount of ammonia would be produced if 200 g of hydrogen react?

    A
    34 g
    B
    1.132 kg
    C
    11.32 kg
    D
    113.2 kg
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