GATE 2017 AG Question Paper with Answer Key PDFs (February 4- Afternoon Session)

GATE 2017 Agriculture Engineering question paper with answer key PDF is available for download in the details. The exam was conducted by IIT Roorkee on February 4, 2017 in the afternoon session. According to the students' GATE 2017 AG Question paper was easy to moderate level. The exam consisted of 65 questions which were divided into 2 sections and 10 questions from general aptitude.

Also check and download previous years’ GATE Question Papers

GATE 2017 Agriculture Engineering (AG) Question Paper with Answer Key PDFs – (February 4, 2022 - Afternoon session)

GATE 2017 AG Question Paper GATE 2017 AG Answer Key
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GATE 2017 Agriculture Engineering Paper Analysis

The exam consisted of two types of question patterns i.e MCQ (Multiple Choice Question) and NAT (Numerical Multiple Type). The total marks of the GATE AG 2017 were 100.

No Of Questions Question Frequency Marks carried out of 100
1 Marks MCQ 20 20
1 Mark NAT 10 10
2 Marks MCQ 15 30
2 Marks NAT 20 40
  • Timings of the exam -180 minutes
  • Equal weightage was given to NAT and MCQs contributing 50 marks each in GATE 2017 AG exam. 55 questions were from core discipline whereas 10 questions were from general aptitude.
  • This exam was held in online (CBT) mode.

GATE 2017 AG Marking Scheme

  • According to the paper format, 0.33 marks were deducted for every 1 marks question, and 0.66 marks were deducted for every 2 marks question.
  • However, there was no minus marking for NAT questions.
  • Zero marks were rewarded for unattempted questions

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Previous Year GATE Question Papers:

GATE aspirants can download the past GATE question papers and answers key to preparing in the best possible manner.

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GATE Questions

  • 1.
    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

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

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

    • 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.

        test

          • test

          • test


        • 4.

          The area of a rhombus whose vertices are (3, 0), (4, 5), (-1, 4) and (-2,-1) taken in order, is:

            • 12 sq.units

            • 24 sq.units


          • 5.
            The points (-1, –2), (1, 0), (-1, 2), (-3, 0) form a quadrilateral of type:

              • Square
              • Rectangle

            • 6.

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

                • a

                • b

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