Which of the following reaction corresponds to Mond’s process ?

1. \(\mathrm{ZrI}_4 \stackrel{1800 \mathrm{~K}}{\longrightarrow} \mathrm{Zr}+2 \mathrm{I}_2\)
2. \(\mathrm{Ni}(\mathrm{CO})_4 \stackrel{450-470 \mathrm{~K}}{\longrightarrow} \mathrm{Ni}+4 \mathrm{CO} \)
3. \(2\left[A u(C N)_2\right]^{-}(a q)+Z n(s) \rightarrow 2 A u(s)+\left[\mathrm{Zn}(\mathrm{CN})_4\right]^{2-}(a q)\)
4. \(2 \mathrm{Al}_2 \mathrm{O}_3+3 \mathrm{C} \rightarrow 4 \mathrm{Al}+3 \mathrm{CO}_2\)
Subtopic:  Refining Process |
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Match the following from column I and column II.
 
Column I Column II
a. Siderite i. ZnCO3
b. Galena ii. FeCO3
c. Calamine iii. PbS

1. (a) – (i) ; (b) – (ii) ; (c) – (iii)
2. (a) – (ii) ; (b) – (iii) ; (c) – (i)
3. (a) – (iii) ; (b) – (ii) ; (c) – (i)
4. (a) – (ii) ; (b) – (i) ; (c) – (iii)
Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
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Match the following in column I with column II and choose the correct combination:
Column I Column II
(A) Aluminium 1. Electrolysis
(B) Iron 2. Reverberatory Furnace
(C) Silicon 3. Blast furnace
(D) Copper 4. Zone refining

1. (A – 1); (B – 3); (C – 4); (D – 2)
2. (A – 2); (B – 3); (C – 4); (D – 1)
3. (A – 3); (B – 2); (C – 1); (D – 4)
4. (A – 2); (D – 4); (C – 1); (D – 3)
Subtopic:  Metallurgy of individual elements |
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The role of \(SiO_2 \) in Cu extraction is:

1. Converts FeO to \(FeSiO_3 \)
2. Converts CaO to \(CaSiO_3 \)
3. Reduces \(Cu_2S \) to Cu
4. None of these
Subtopic:  Metallurgy of individual elements |
Level 4: Below 35%
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Match column-I with column-II and select the correct option:

Column I Column II
(i) Gold (Au) (a) SO2
(ii) Blister Copper (b) NaOH
(iii) Al2O3 (c) NaCN
(iv) Froth stabilizer (d) Aniline
 
I II III IV
1. c a b d
2. a b c d
3. b c d a
4. c b a d
Subtopic:  Intro - Flux, Leaching, Roasting & Calcination | Metallurgy of individual elements |
 89%
Level 1: 80%+
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Match List-I with List-II and select the correct option:
 
List-I List-II
(I) Calamine (a) ZnS
(II) Sphalerite (b) \(ZnCO_3 \)
(III) Galena (c) PbS
(IV) Siderite (d) \(FeCO_3 \)
 
Options: (I) (II) (III) (IV)
1. a b
2. c
3. b d
4. d c a
Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
 84%
Level 1: 80%+
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In the extraction of copper, the following reaction takes place, \(FeO+SiO_2\rightarrow FeSiO_3 \)

In the above reaction, \(FeO \) and \(FeSiO_3 \) act as a/an respectively:

1. Flux, Slag
2. Slag, Flux
3. Gangue, Slag
4. Slag, Flux
Subtopic:  Metallurgy of individual elements |
 52%
Level 3: 35%-60%
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The role of depressants in 'Froth Flotation method' is to:
 
1. selectively prevent one component of the ore from coming to the froth.
2. reduce the consumption of oil for froth formation.
3. stabilize the froth.
4. enhance non-wettability of the mineral particles.
Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
 72%
Level 2: 60%+
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Statement I:  In the electro-refining of blister copper precious metals are obtained in anode mud. 
Statement II:  Pure copper is obtained by the above method
 
 
1.  Both Statement I and Statement II are true. 
2.  Both Statement I and Statement II are false. 
3.  Statement I is True while Statement II is false. 
4.  Statement I is False while Statement II is true. 
Subtopic:  Refining Process |
 76%
Level 2: 60%+
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Statement-I: In the Ellingham diagram metal oxide, having a higher value of \(\Delta G \)  is more stable, than metal oxide has less \(\Delta G\) value.
Statement-II: In the Ellingham diagram, lower metal will reduce uppers metal from its oxide. 

Select true (T) and false (F) regarding these statements respectively.
1. T, T
2. F, F
3. T, F
4. F, T
Subtopic:  Ellingham Diagram |
 58%
Level 3: 35%-60%
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