Chemistry
Chemical Reactions and Processes
571 Questions
Chemical reactions and processes questions cover the transformation of substances through electrolysis, thermal decomposition, and catalysis. Key areas include identifying gas evolution, balancing chemical equations, and understanding industrial chemical applications. This general chemistry topic is a staple in the science sections of multiple competitive examinations.
Thermal decompositionElectrolysis processGas evolution reactionsHeterogeneous catalystsFuel cell components
Chemical Reactions and Processes Questions
-
Sodium
-
Potassium
-
Lithium
-
Cadmium
D
Correct answer
Explanation
Sodium, potassium, and lithium are all alkali metals (Group 1) that react vigorously with water to produce hydrogen gas and their respective hydroxides. Cadmium is a transition metal that does not react with water under normal conditions, making it the correct answer.
-
Neutrinos
-
Water
-
Neutrons
-
Electrons
B,D
Correct answer
Explanation
In a hydrogen fuel cell, hydrogen and oxygen combine to form water (H2O) as the primary product. Electrons flow through the external circuit creating electrical current, which is the useful output. Early spacecraft used fuel cells to provide both electricity and drinking water for astronauts. Neutrons and neutrinos are not produced in this reaction.
-
Explosive reaction
-
Emission reaction
-
Fission reaction
-
Contact process
-
Chain process
D
Correct answer
Explanation
Sulfuric acid is manufactured by the Contact process, which involves catalytic oxidation of SO2 to SO3 over vanadium pentoxide catalyst, followed by absorption in concentrated H2SO4 to form oleum. The name 'Contact' refers to the solid catalyst that 'contacts' the reacting gases. The other options (explosive, emission, fission, chain) are not related to H2SO4 manufacturing.
-
Grano magnesium
-
Metallic potassium
-
Ethiline
-
Ethanol
B
Correct answer
Explanation
Metallic potassium (option B) is highly reactive with water and ignites spontaneously upon contact, producing hydrogen gas and heat. The reaction is 2K + 2H2O → 2KOH + H2 + heat. Granulated magnesium (A) doesn't ignite in water at room temperature, 'Ethiline' (C) appears to be a typo for ethylene or a similar compound, and ethanol (D) is miscible with water without ignition.
-
hydrogen peroxide
-
hydrogen
-
argon
-
sulpur dioxide
B
Correct answer
Explanation
When dilute sulphuric acid reacts with zinc metal, hydrogen gas is evolved. This is a classic single displacement reaction producing zinc sulfate and hydrogen gas. Hydrogen peroxide (H2O2) is not produced, argon is inert, and sulfur dioxide would require different reactants/conditions.
-
Neutralization
-
salt+water
-
water
-
salt+hydrogen
B
Correct answer
Explanation
When an acid reacts with an alkali (base), a neutralization reaction occurs producing salt and water. For example, HCl + NaOH gives NaCl (salt) + H2O (water). Option A describes the reaction name, not the products. Hydrogen gas is produced when acids react with metals, not alkalis.
-
Pheromones
-
Changes in the chemical composition of the water
-
Irritant particles
-
All of these
C
Correct answer
Explanation
Pearl formation is triggered when irritant particles (such as parasites, debris, or implanted beads in cultured pearls) enter the mollusk's shell. The mollusk secretes nacre (mother-of-pearl) to coat the irritant, layer by layer, creating the pearl. Pheromones are chemical signals between organisms, not related to pearl formation. Water chemistry changes don't directly trigger pearl formation - it's the physical irritant that matters.
-
marble powder and dilute H2SO4
-
magnesite and dilute H2SO4
-
limestone and dilute H2SO4
-
sodium bi-carnonate and dilute H2SO4
D
Correct answer
Explanation
Sodium bicarbonate (NaHCO3) reacts rapidly with dilute sulfuric acid to produce carbon dioxide gas through acid-base reaction: 2NaHCO3 + H2SO4 → Na2SO4 + 2H2O + 2CO2. This quick CO2 generation makes it ideal for fire extinguishers. Marble, magnesite, and limestone react too slowly for effective emergency use.
-
azane synthesis
-
flue gas
-
carbonic oxide methanation
-
Hydrodesulfurization
-
butyl hydride hydrogenolysis
A
Correct answer
Explanation
Correct answer. H3Ru3NiCp(CO)9 clusters contain Ru-Ni as core metals, which catalyse the azane synthesis.
-
Only 1
-
Only 2
-
Only 3
-
1 and 3
-
2 and 3
D
Correct answer
Explanation
Correct answer.
Hydrazine (N2H4) is a nitrogen hydride. In Raschig process, it is prepared by the reaction of ammonia with sodium hypochlorite in a dilute aqueous solution and Boric acid is a weak monobasic acid. It is not a protonic acid, but acts as a Lewis acid by accepting an electron pair from a hydroxyl ion.
Hence, statements 1 and 3 are false.
C
Correct answer
Explanation
KMnO4 reacts with di HCl and gives chlorine gas.
2KMnO4 + 16 HCl ------>2KCl + 2MnCl2 + 5Cl2 +2H2O
-
acidic and bleaching agent
-
basic gas only
-
acidic gas only
-
basic and bleaching agent
-
neutral compound
A
Correct answer
Explanation
It turns blue litmus into red which finally bleaches to white.
-
Conc. H2SO4
-
CaO
-
P2O5
-
HNO3
-
NH3
A
Correct answer
Explanation
Conc. H2SO4 is used as a drying agent for Hydrogen chloride gas because it does not react with HCl.
-
Carbon dioxide
-
Sulphur dioxide
-
Hydrogen sulphide
-
Hydrogen
-
Chlorine
D
Correct answer
Explanation
Hydrogen gas is evolved when dil HCl is added to Magnesium. Mg + 2HCl ---> MgCl2 + H2
-
Sulphur dioxide
-
Sulphur
-
Hydrogen
-
Chlorine
-
Hydrogen sulphide
E
Correct answer
Explanation
Hydrogen sulphide gas is liberated on reacting Iron(II) Sulphide with dilute HCl.