GATE 2013 Textile Engineering & Fibre Science (TF) Question Paper with Answer Key PDFs (January 20- Forenoon Session)

GATE 2013 Textile Engineering & Fibre Science (TF) Question Paper is now available to download here. The exam was conducted by IIT Bombay on January 20, 2013 in the forenoon session. The question paper was divided into 2 sections, namely, General Aptitude [15 marks], and Core subjects [85 marks]. There were a total of 65 questions with a blend of Multiple Choice Questions (MCQs) and Numerical Answer Type (NAT) Type questions.

GATE 2013 Textile Engineering & Fibre Science (TF) Question Paper with Answer Key PDFs - (January 20 - Forenoon Session)

GATE 2013 TF Question Paper GATE 2013 TF Answer Key
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GATE 2013 TF Answer Key Details

Question No. Answer Question No. Answer
1 B 34 B
2 D 35 A
3 D 36 A
4 D 37 B
5 B 38 B
6 B 39 C
7 C 40 B
8 D 41 C
9 B 42 D
10 A 43 A
11 C 44 B
12 D 45 C
13 A 46 D
14 A 47 C
15 D 48 B
16 D 49 A
17 B 50 B
18 C 51 B
19 D 52 C
20 C 53 C
21 D 54 A
22 A 55 B
23 A 56 D
24 B 57 B
25 9.08 to 9.1 58 C
26 7 59 B
27 18 60 C
28 9 61 A
29 1.99 to 2 62 B
30 10 63 D
31 20 64 A
32 0.48 to 0.49 65 D
33 A

GATE 2013 TF Paper Analysis

GATE 2013 TF Paper consisted of a total of 65 questions which were divided into 2 sections: General Aptitude and the Core subjects. There were a few questions that were time-consuming in the technical section, whereas, the General Aptitude section was rated as moderate by the candidates. The technical section consisted of Multiple Choice Questions (MCQs) as well as the Numerical Answer Type (NAT) Questions.

General Aptitude
Number of 1 mark questions 5
Number of 2 mark questions 5
Textile Engineering & Fibre Science
Number of 1 mark questions 25
Number of 2 mark questions 30
Total number of questions 65
General Aptitude
Number of MCQ type questions 10
Textile Engineering & Fibre Science
Number of MCQ type questions 47
Number of NAT type questions 8

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Other PG Exam Question Papers:

GATE Questions

  • 1.

    new

      • new one

      • new one two


    • 2.

      In p-type semiconductor density of mobile holes exceeds that of conduction electrons. Hence, minority carriers in p -type semiconductor are conduction (free) electrons.


       

        • a

        • b


      • 3.

        Write a balanced equation for the reaction of molecular nitrogen (N2) and oxygen (O2) to form dinitrogen pentoxide. \((f(x)=x^2)\)

          • N2 + O2 → N2O5 (unbalanced equation)
          • 2N2 + 5O2 → 2N2O5
          • option 3

        • 4.

          \((1+i)^{2}\div i(2i-1)\)

            • a

            • b


          • 5.

            sample text

              • dfb

              • dfg


            • 6.

              sample text 2

                • dsfdg

                • fdgd

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