GATE 2014 Agricultural Engineering (AG) Question Papers with Answer Key PDFs (February 2- Afternoon session)

GATE 2014 Agricultural Engineering (AE) Question Paper and Answer Key PDFs are available for download.GATE Agricultural Engineering (AG) 2014 was conducted on February 2nd Afternoon Session by IIT Kharagpur. The overall paper is of 100 marks for 65 questions. The level of difficulty of paper was average to tough. GATE AE Question Ppaer consisted of 57 MCQs and 8 NAT Questions.

GATE 2014 Agricultural Engineering (AG) Question Paper with Answer Key PDFs (February 2- Forenoon Session)

GATE 2014 Agricultural Engineering (AG) Question Paper GATE 2014 Agricultural Engineering (AG) Answer Key
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GATE 2014 Agricultural Engineering (AG) Detailed Paper Analysis

  • GATE 2014 AG Question Paper, had 10 General Aptitude questions.
  • In the Core Discipline-Agricultural Engineering, a total of 55 questions were asked. The Details regarding GATE 2014 AG, GA, and Core Discipline Section in the question paper are given below:
Type of Questions General Aptitude Core Discipline
Number of Questions Marks Number of Questions Marks
No. of 1-mark MCQs 5 5 20 20
No. of 2 marks MCQs 4 8 28 56
No. of 1-mark NATs - - 5 5
No. of 2 marks NATs 1 2 2 4

GATE Previous Year Question Papers:

Other PG Exam Question Papers:

GATE Questions

  • 1.
    Question Text

      • A
      • B

    • 2.
      Direction: In these tests you will find an Incomplete Figure and four Answer Figures. You have to select one diagram from the Answer Figures which fits into the blank column in Incomplete Figure in order to complete it
      Incomplete Figure

      Answer Figures

        • Figure (a)

        • Figure (b)

        • Figure ©


      • 3.
        The points (-1, –2), (1, 0), (-1, 2), (-3, 0) form a quadrilateral of type:

          • Square
          • Rectangle

        • 4.
          For the reaction, $H_{2} + I_{2} {\rightleftharpoons} 2HI, K= 47.6.$ If the initial number of moles of each reactant and product is 1 mole then at equilibrium

            • $\left[I_{2}\right]=\left[H_{2}\right], \left[I_{2}\right] > \left[HI\right]$
            • $({\frac{x^3}{9}})$
            • \(\left[I_{2}\right]>\left[H_{2}\right], \left[I_{2}\right] = \left[HI\right]\)

            • $\omega\propto\,n^{\frac{1}{3}}$

          • 5.

            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


            • 6.

              new

                • new one

                • new one two

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