A medical imaging device shoots 8 million electrons per second through an Ohmic gas. The electrons are motivated by a 3000 V potential diffe

Question

A medical imaging device shoots 8 million electrons per second through an Ohmic gas. The electrons are motivated by a 3000 V potential difference. What is the effective resistance of the gas?

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Đan Thu 5 years 2021-08-18T06:15:45+00:00 1 Answers 36 views 0

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    2021-08-18T06:17:00+00:00

    Answer:

    Resistance of the gas is given as

    R = 2.34 \times 10^{15} Ohm

    Explanation:

    As we know that number of electrons per second is

    \frac{N}{t} = 8 \times 10^6

    now we have

    i = \frac{N}{t} e

    i = 8 \times 10^6 (1.6 \times 10^{-19})

    i = 1.28 \times 10^{-12}

    now we have

    R = \frac{V}{i}

    R = \frac{3000}{1.28 \times 10^{-12}}

    R = 2.34 \times 10^{15} Ohm

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