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BCECE 2014 Physics Question Paper with Answer Key PDFs (May 18)
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BCECE 2014 Physics Question paper with answer key pdf conducted on May 18 is available for download. The exam was successfully organized by Bihar Combined Entrance Competitive Examination Board. The question paper comprised a total of 100 questions.

BCECE 2014 Physics Question Paper with Answer Key PDFs

BCECE 2014 Physics Question Paper PDF BCECE 2014 Physics Answer Key PDF
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BCECE Questions

1.
Instantaneous displacement current of 1.0A in the space between the parallel plates of 1μF capacitor can be established by changing the potential difference of:

    • 10-6 V/S

    • 10-8 V/S

    • 10-6 V/S

    • 10-8 V/S

    2.

    A ray of light is incident normally on one face of an equilateral prism (μ=\(\frac{3}{2}\)). The angle of deviation is:

      • 30°

      • 60°

      • 45°

      • 75°

      3.
      A beaker is a field with water (μ=\(\frac{4}{3}\)) up to a height of 33.25cm. A concave mirror is placed 15 cm above the water level and the image of an object placed at the bottom is formed 25cm below the water level. The focal length of the mirror is nearly :

        • 6 cm
        • 18 cm
        • 12 cm
        • 24 cm

        4.
        Young's double slit experiment is first performed in air and then in a medium other than air. It is found that the 9th bright fringe in the medium lies where the 5th dark fringe lies in the air, then the refractive index of the medium is:

          • 1.43

          • 1.63

          • 1.5

          • 1.7

          5.
          An air doubble is inside water (μ=\(\frac{4}{3}\)). At what distance from the air bubble should a point object be placed so as to form a real image at the same distance from the dubble? (r is the radius of curvature of the bubble)

            • 2R

            • 4R

            • 3R

            • The air bubble cannot form a real image

            6.
            The resolving power of a telescope is directly proportional to:

              • The frequency of light used

              • Square of the frequency of light used

              • The wavelength of light used

              • Square the wavelength of light used

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