In the extraction of copper from its sulphide ore, the metal is finally obtained by the reduction of cuprous oxide with?

1. Iron(II) sulphide

2. Carbon monoxide

3. Copper(I) sulphide

4. Sulphur dioxide

Subtopic:  Metallurgy of individual elements |
 65%
Level 2: 60%+
NEET - 2015
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Which one of the following pairs of solutions is not an acidic buffer?

1. HClO4 and NaClO4
2. CH3COOH and CH3COONa
3. H2CO3 and Na2CO3
4. H3PO4 and Na3PO4

Subtopic:  Buffer |
 68%
Level 2: 60%+
NEET - 2015
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Assuming complete ionization, same moles of which of the following compounds will require the least amount of acidified KMnO4 for complex oxidation?

1. FeSO4

2. FeSO3

3. FeC2O4

4. FeNO22

Subtopic:  d-Block Elements- Properties & Uses |
 52%
Level 3: 35%-60%
NEET - 2015
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The number of structural isomers possible from the molecular formula C3H9N are:

1. Four (4) 2. Five (5)
3. Two (2) 4. Three (3)
Subtopic:  Amines - Preparation & Properties |
 56%
Level 3: 35%-60%
NEET - 2015
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20.0 g of a magnesium carbonate sample decomposes on heating to give carbon dioxide and 8.0 g of magnesium oxide.
The percentage purity of magnesium carbonate in the sample is: 
(Atomic weight of Mg=24)

1. 75 2. 96
3. 60 4. 84
Subtopic:  Limiting Reagent |
 68%
Level 2: 60%+
NEET - 2015
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Two possible stereo-structures of CH3CHOH.COOH, that are optically active, called:

1. Diastereomers 2. Atropisomers
3. Enantiomers 4. Mesomers 
Subtopic:  Stereo Isomers |
 80%
Level 1: 80%+
NEET - 2015
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The heat of combustion of carbon to CO2 is –393.5 KJ/mol. The heat released upon the formation of 35.2 g of CO2 from carbon and oxygen gas is:

1. –315 KJ 2. +315 KJ
3. –630 KJ 4. +630 KJ
Subtopic:  Thermochemistry |
 75%
Level 2: 60%+
NEET - 2015
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The rate Constant of reaction A → B is 0.6 × 10–3 \(\mathrm{molL}^{-1} \mathrm{~S}^{-1}\). If the Concentration of A is 5M, then the concentration of B after 20 min is:

1. 1.08M

2. 3.60M

3. 0.36M

4. 0.72M

Subtopic:  Order, Molecularity and Mechanism |
 58%
Level 3: 35%-60%
NEET - 2015
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The formation of the oxide ion, O²⁻(g), from an oxygen atom occurs in two successive steps:

O(g) + e⁻ → O⁻(g)  ΔH = −141 kJ mol⁻¹

O⁻(g) + e⁻ → O²⁻(g)  ΔH = +780 kJ mol⁻¹

Although O²⁻ is isoelectronic with neon, its formation in the gaseous state is energetically unfavourable. What is the main reason for this?

1. Electron repulsion outweighs the stability gained by achieving a noble gas configuration.
2. O– ion has a comparatively smaller size than the oxygen atom.
3. Oxygen is more electronegative.
4. Addition of electrons in oxygen results in a large size of the ion.
Subtopic:  Electron Affinity (EA) |
 76%
Level 2: 60%+
NEET - 2015
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What is the mass of the precipitate formed when 50 mL of 16.9% solution of AgNO3 is mixed with 50 mL of 5.8% NaCl solution? (Ag = 107.8, N = 14, O = 16, Na= 23, Cl = 35.5)
1. 28 g
2. 3.5 g
3. 7 g
4. 14 g

Subtopic:  Equation Based Problem |
 54%
Level 3: 35%-60%
NEET - 2015
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