Mg in the Kroll process acts as

(1)  Reducing agent

(2)  Oxidizing agent

(3)  Oxidizing agent at low temperature

(4)  Reducing agent at low temperature

Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
 55%
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Out of the following which is a hydride?

(1)  Hydrolith

(2)  Oxidane

(3)  Azane

(4)  All of these

Subtopic:  Type of Hydride |
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The process of converting hydrated alumina into anhydrous alumina is called

(1)  Roasting

(2)  Smelting

(3)  Dressing

(4)  Calcination

Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
 52%
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2MS + 3O2 → 2MO + 2SO2
2MO + MS → 3M + SO2

The metal M in above-mentioned reaction is:

1. Mg

2. Pb

3. Sn

4. Fe

Subtopic:  Metallurgy of individual elements |
 69%
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Consider the following reaction.
\(\small{Bauxite\ ore\ +\ NaOH\ (conc.) \xrightarrow[\Delta]{Digester} \underset{Soluble}{(A)}}\)
\((A) \xrightarrow{Fresh\ Al(OH)_3}\ \underset{White}{(B)}\ +\ (C)\)
\({(B)} \xrightarrow[]{\Delta}\ (D)\ +\ H_2O\)
What is the molecular formula of compound D?

1. NaAlO2

2. AlOH3

3. Al2O3

4. Na2O

Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
 80%
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When an impurity in metal has a greater affinity for oxygen and is more easily oxidized than the metal itself, then the metal is refined by

(1)  Cupellation

(2)  Zone refining

(3)  Poling

(4)  Electrorefining

Subtopic:  Refining Process |
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Silver containing lead as an impurity is removed by

1.  Poling

2.  Cupellation

3.  Lavigation

4.  Distillation

Subtopic:  Refining Process |
 78%
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Consider the following metallurgical process:

Sulphide  \(\xrightarrow[]{\Delta }\)  oxide  \(\xrightarrow[]{\Delta }\)
Impure metal \(\xrightarrow[]{\Delta }\) pure metal

The processes A, B, and C in the above mentioned reaction are, respectively:

1. Calcination, smelting, and electrolysis

2. Roasting, smelting, and electrolysis

3. Calcination, auto reduction, and bessemerisation

4. Roasting, aluminothermic reduction, electrolysis

Subtopic:  Metallurgy of individual elements |
 73%
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The depressant NaCN

1. Used to separate PbS from ZnS by forming a complex with PbS

2. Used to separate PbS from ZnS by forming a complex with ZnS

3. Used to form froth

3. Used as the collector

Subtopic:  Intro - Flux, Leaching, Roasting & Calcination |
 74%
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Ellingham diagram for the formation of CO2 is a straight line in the given graph. This is due to

1.  Increase in entropy during CO2 formation

2.  Decrease in entropy during CO2 formation

3.  Entropy remains constant during CO2 formation

4.  Cannot be predicted

Subtopic:  Ellingham Diagram |
 83%
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