Polymers Practice
Take 5 chapter-wise practice tests of 25 questions each on Polymers for NEET with +4/-1 scoring, answer review, and concise explanations.
Take 5 chapter-wise practice tests of 25 questions each on Polymers for NEET with +4/-1 scoring, answer review, and concise explanations.
5 original practice tests, 25 questions each, NEET 4/-1 marking, and answer review after submission.
Top banner before test cards for Polymers.
1. A polymer is a:
Explanation: Polymers consist of repeating monomer-derived units.
2. The small molecules that form polymers are called:
Explanation: They join repeatedly to build the chain.
3. Polyethylene is formed by polymerization of:
Explanation: Opening of the double bond gives the chain polymer.
4. PVC is formed from:
Explanation: Polyvinyl chloride comes from chloroethene.
5. Teflon is polymer of:
Explanation: PTFE forms from CF$_2$=CF$_2$.
6. Nylon-6,6 is formed from:
Explanation: A diamine and dicarboxylic acid condense.
7. Bakelite is obtained from:
Explanation: Bakelite is a phenol-formaldehyde resin.
8. Natural rubber is mainly polymer of:
Explanation: It is cis-1,4-polyisoprene.
9. If all monomer units are same, the polymer is called:
Explanation: One monomer type gives a homopolymer.
10. Buna-S is an example of:
Explanation: It is made from butadiene and styrene.
11. A biodegradable polymer commonly discussed in school chemistry is:
Explanation: PHBV is one of the classic biodegradable polymer examples.
12. Vulcanization of rubber mainly improves:
Explanation: Sulfur crosslinks modify rubber properties.
13. A thermoplastic polymer generally:
Explanation: Linear or lightly branched chains show this behavior.
14. Bakelite is a:
Explanation: It forms a rigid crosslinked network.
15. Nylon is commonly classified as a synthetic:
Explanation: Synthetic fibers include nylon and polyesters.
16. An elastomer is a polymer that is:
Explanation: Rubber-like materials are elastomers.
17. Cross-linking in polymers generally makes them:
Explanation: Network structure restricts flow and melting.
18. Polystyrene is obtained from:
Explanation: Vinyl benzene polymerizes to polystyrene.
19. Condensation polymerization generally eliminates small molecules such as:
Explanation: Small molecules are commonly lost during chain growth.
20. A linear polymer generally has chains that are:
Explanation: This often favors thermoplastic behavior.
21. Teflon is preferred as non-stick coating mainly because it is:
Explanation: Its strong C-F bonds give stability.
22. Cellulose is a:
Explanation: It is a natural polysaccharide.
23. Nylon is a polyamide because its chain contains repeated:
Explanation: The -CO-NH- unit repeats along the chain.
24. A fast NEET route in polymers is to identify whether the polymer forms by addition or:
Explanation: This first split explains most examples quickly.
25. The highest-yield part of this chapter is named examples linked to polymer type and:
Explanation: Students often score by mapping polymer to monomer and class.
26. A polymer is a:
Explanation: Polymers consist of repeating monomer-derived units.
27. The small molecules that form polymers are called:
Explanation: They join repeatedly to build the chain.
28. Polyethylene is formed by polymerization of:
Explanation: Opening of the double bond gives the chain polymer.
29. PVC is formed from:
Explanation: Polyvinyl chloride comes from chloroethene.
30. Teflon is polymer of:
Explanation: PTFE forms from CF$_2$=CF$_2$.
31. Nylon-6,6 is formed from:
Explanation: A diamine and dicarboxylic acid condense.
32. Bakelite is obtained from:
Explanation: Bakelite is a phenol-formaldehyde resin.
33. Natural rubber is mainly polymer of:
Explanation: It is cis-1,4-polyisoprene.
34. If all monomer units are same, the polymer is called:
Explanation: One monomer type gives a homopolymer.
35. Buna-S is an example of:
Explanation: It is made from butadiene and styrene.
36. A biodegradable polymer commonly discussed in school chemistry is:
Explanation: PHBV is one of the classic biodegradable polymer examples.
37. Vulcanization of rubber mainly improves:
Explanation: Sulfur crosslinks modify rubber properties.
38. A thermoplastic polymer generally:
Explanation: Linear or lightly branched chains show this behavior.
39. Bakelite is a:
Explanation: It forms a rigid crosslinked network.
40. Nylon is commonly classified as a synthetic:
Explanation: Synthetic fibers include nylon and polyesters.
41. An elastomer is a polymer that is:
Explanation: Rubber-like materials are elastomers.
42. Cross-linking in polymers generally makes them:
Explanation: Network structure restricts flow and melting.
43. Polystyrene is obtained from:
Explanation: Vinyl benzene polymerizes to polystyrene.
44. Condensation polymerization generally eliminates small molecules such as:
Explanation: Small molecules are commonly lost during chain growth.
45. A linear polymer generally has chains that are:
Explanation: This often favors thermoplastic behavior.
46. Teflon is preferred as non-stick coating mainly because it is:
Explanation: Its strong C-F bonds give stability.
47. Cellulose is a:
Explanation: It is a natural polysaccharide.
48. Nylon is a polyamide because its chain contains repeated:
Explanation: The -CO-NH- unit repeats along the chain.
49. A fast NEET route in polymers is to identify whether the polymer forms by addition or:
Explanation: This first split explains most examples quickly.
50. The highest-yield part of this chapter is named examples linked to polymer type and:
Explanation: Students often score by mapping polymer to monomer and class.
51. A polymer is a:
Explanation: Polymers consist of repeating monomer-derived units.
52. The small molecules that form polymers are called:
Explanation: They join repeatedly to build the chain.
53. Polyethylene is formed by polymerization of:
Explanation: Opening of the double bond gives the chain polymer.
54. PVC is formed from:
Explanation: Polyvinyl chloride comes from chloroethene.
55. Teflon is polymer of:
Explanation: PTFE forms from CF$_2$=CF$_2$.
56. Nylon-6,6 is formed from:
Explanation: A diamine and dicarboxylic acid condense.
57. Bakelite is obtained from:
Explanation: Bakelite is a phenol-formaldehyde resin.
58. Natural rubber is mainly polymer of:
Explanation: It is cis-1,4-polyisoprene.
59. If all monomer units are same, the polymer is called:
Explanation: One monomer type gives a homopolymer.
60. Buna-S is an example of:
Explanation: It is made from butadiene and styrene.
61. A biodegradable polymer commonly discussed in school chemistry is:
Explanation: PHBV is one of the classic biodegradable polymer examples.
62. Vulcanization of rubber mainly improves:
Explanation: Sulfur crosslinks modify rubber properties.
63. A thermoplastic polymer generally:
Explanation: Linear or lightly branched chains show this behavior.
64. Bakelite is a:
Explanation: It forms a rigid crosslinked network.
65. Nylon is commonly classified as a synthetic:
Explanation: Synthetic fibers include nylon and polyesters.
66. An elastomer is a polymer that is:
Explanation: Rubber-like materials are elastomers.
67. Cross-linking in polymers generally makes them:
Explanation: Network structure restricts flow and melting.
68. Polystyrene is obtained from:
Explanation: Vinyl benzene polymerizes to polystyrene.
69. Condensation polymerization generally eliminates small molecules such as:
Explanation: Small molecules are commonly lost during chain growth.
70. A linear polymer generally has chains that are:
Explanation: This often favors thermoplastic behavior.
71. Teflon is preferred as non-stick coating mainly because it is:
Explanation: Its strong C-F bonds give stability.
72. Cellulose is a:
Explanation: It is a natural polysaccharide.
73. Nylon is a polyamide because its chain contains repeated:
Explanation: The -CO-NH- unit repeats along the chain.
74. A fast NEET route in polymers is to identify whether the polymer forms by addition or:
Explanation: This first split explains most examples quickly.
75. The highest-yield part of this chapter is named examples linked to polymer type and:
Explanation: Students often score by mapping polymer to monomer and class.
76. A polymer is a:
Explanation: Polymers consist of repeating monomer-derived units.
77. The small molecules that form polymers are called:
Explanation: They join repeatedly to build the chain.
78. Polyethylene is formed by polymerization of:
Explanation: Opening of the double bond gives the chain polymer.
79. PVC is formed from:
Explanation: Polyvinyl chloride comes from chloroethene.
80. Teflon is polymer of:
Explanation: PTFE forms from CF$_2$=CF$_2$.
81. Nylon-6,6 is formed from:
Explanation: A diamine and dicarboxylic acid condense.
82. Bakelite is obtained from:
Explanation: Bakelite is a phenol-formaldehyde resin.
83. Natural rubber is mainly polymer of:
Explanation: It is cis-1,4-polyisoprene.
84. If all monomer units are same, the polymer is called:
Explanation: One monomer type gives a homopolymer.
85. Buna-S is an example of:
Explanation: It is made from butadiene and styrene.
86. A biodegradable polymer commonly discussed in school chemistry is:
Explanation: PHBV is one of the classic biodegradable polymer examples.
87. Vulcanization of rubber mainly improves:
Explanation: Sulfur crosslinks modify rubber properties.
88. A thermoplastic polymer generally:
Explanation: Linear or lightly branched chains show this behavior.
89. Bakelite is a:
Explanation: It forms a rigid crosslinked network.
90. Nylon is commonly classified as a synthetic:
Explanation: Synthetic fibers include nylon and polyesters.
91. An elastomer is a polymer that is:
Explanation: Rubber-like materials are elastomers.
92. Cross-linking in polymers generally makes them:
Explanation: Network structure restricts flow and melting.
93. Polystyrene is obtained from:
Explanation: Vinyl benzene polymerizes to polystyrene.
94. Condensation polymerization generally eliminates small molecules such as:
Explanation: Small molecules are commonly lost during chain growth.
95. A linear polymer generally has chains that are:
Explanation: This often favors thermoplastic behavior.
96. Teflon is preferred as non-stick coating mainly because it is:
Explanation: Its strong C-F bonds give stability.
97. Cellulose is a:
Explanation: It is a natural polysaccharide.
98. Nylon is a polyamide because its chain contains repeated:
Explanation: The -CO-NH- unit repeats along the chain.
99. A fast NEET route in polymers is to identify whether the polymer forms by addition or:
Explanation: This first split explains most examples quickly.
100. The highest-yield part of this chapter is named examples linked to polymer type and:
Explanation: Students often score by mapping polymer to monomer and class.
101. A polymer is a:
Explanation: Polymers consist of repeating monomer-derived units.
102. The small molecules that form polymers are called:
Explanation: They join repeatedly to build the chain.
103. Polyethylene is formed by polymerization of:
Explanation: Opening of the double bond gives the chain polymer.
104. PVC is formed from:
Explanation: Polyvinyl chloride comes from chloroethene.
105. Teflon is polymer of:
Explanation: PTFE forms from CF$_2$=CF$_2$.
106. Nylon-6,6 is formed from:
Explanation: A diamine and dicarboxylic acid condense.
107. Bakelite is obtained from:
Explanation: Bakelite is a phenol-formaldehyde resin.
108. Natural rubber is mainly polymer of:
Explanation: It is cis-1,4-polyisoprene.
109. If all monomer units are same, the polymer is called:
Explanation: One monomer type gives a homopolymer.
110. Buna-S is an example of:
Explanation: It is made from butadiene and styrene.
111. A biodegradable polymer commonly discussed in school chemistry is:
Explanation: PHBV is one of the classic biodegradable polymer examples.
112. Vulcanization of rubber mainly improves:
Explanation: Sulfur crosslinks modify rubber properties.
113. A thermoplastic polymer generally:
Explanation: Linear or lightly branched chains show this behavior.
114. Bakelite is a:
Explanation: It forms a rigid crosslinked network.
115. Nylon is commonly classified as a synthetic:
Explanation: Synthetic fibers include nylon and polyesters.
116. An elastomer is a polymer that is:
Explanation: Rubber-like materials are elastomers.
117. Cross-linking in polymers generally makes them:
Explanation: Network structure restricts flow and melting.
118. Polystyrene is obtained from:
Explanation: Vinyl benzene polymerizes to polystyrene.
119. Condensation polymerization generally eliminates small molecules such as:
Explanation: Small molecules are commonly lost during chain growth.
120. A linear polymer generally has chains that are:
Explanation: This often favors thermoplastic behavior.
121. Teflon is preferred as non-stick coating mainly because it is:
Explanation: Its strong C-F bonds give stability.
122. Cellulose is a:
Explanation: It is a natural polysaccharide.
123. Nylon is a polyamide because its chain contains repeated:
Explanation: The -CO-NH- unit repeats along the chain.
124. A fast NEET route in polymers is to identify whether the polymer forms by addition or:
Explanation: This first split explains most examples quickly.
125. The highest-yield part of this chapter is named examples linked to polymer type and:
Explanation: Students often score by mapping polymer to monomer and class.