
The proton is heavier than an electron by ________:
(a)- 1835 times
(b)- 18000 times
(c)- 1000 times
(d)- 100 times
Answer
220.5k+ views
Hint: An electron is a fundamental particle which has negative charge and the mass of the electron is $9.11\text{ x 1}{{\text{0}}^{-28}}\text{ g}$, and a proton is a fundamental particle which has a positive charge and the mass of a proton is $1.67\text{ x 1}{{\text{0}}^{-24}}\text{ g}$.
Complete step by step answer:
Let's study proton and electron:
We know that an atom is electrically neutral, so it must be having an equal amount of negative and equal amount f positive charge. So the positive charge in an atom is due to the presence of protons.
So, we can say that a proton is a fundamental particle that has a unit positive charge.
Protons were discovered from anode rays. When high voltage is passed between the electrodes then it was found that some rays were coming from the side of the anode which passed through the holes in the cathode and produced green fluorescence. These rays were called anode rays or canal rays or positive rays (because of the presence of positive atoms).
The charge of a proton is $1.6\text{ x 1}{{\text{0}}^{-19}}$C and the mass of proton is$1.67\text{ x 1}{{\text{0}}^{-24}}\text{ g}$.
The negative part of the atom is due to the presence of electrons so we can say that electron is a fundamental particle that has one unit negative charge.
Electrons were discovered from cathode rays. When high voltage is passed between the electrodes it was found that at very low-pressure rays from the cathode were passed to the hole of the anode which had faint greenish color. These were called cathode rays and carry a negative charge (because of the presence of electrons).
The charge of the electron is $-1.6\text{ x 1}{{\text{0}}^{-19}}$C and the mass of electron is $9.11\text{ x 1}{{\text{0}}^{-28}}$g.
So, the ratio of mass of proton to the mass of electron is:
$\dfrac{1.67\text{ x 1}{{\text{0}}^{-24}}}{9.11\text{ x 1}{{\text{0}}^{-27}}}=1835$
So, the mass of the proton is 1835 times heavier than the mass of the electron.
So, the correct option is (a)- 1835 times.
Note: Both the rays i.e., anode rays and cathode rays travel in a straight line. The mass of both particles was calculated by dividing the charge to the ratio of charge/mass:
$m=\dfrac{e}{e/m}$ .
The ratio of charge/mass of a proton is $9.58\text{ x 1}{{\text{0}}^{4}}C/g$and that of the electron is $1.76\text{ x 1}{{\text{0}}^{8}}C/g$.
Complete step by step answer:
Let's study proton and electron:
We know that an atom is electrically neutral, so it must be having an equal amount of negative and equal amount f positive charge. So the positive charge in an atom is due to the presence of protons.
So, we can say that a proton is a fundamental particle that has a unit positive charge.
Protons were discovered from anode rays. When high voltage is passed between the electrodes then it was found that some rays were coming from the side of the anode which passed through the holes in the cathode and produced green fluorescence. These rays were called anode rays or canal rays or positive rays (because of the presence of positive atoms).
The charge of a proton is $1.6\text{ x 1}{{\text{0}}^{-19}}$C and the mass of proton is$1.67\text{ x 1}{{\text{0}}^{-24}}\text{ g}$.
The negative part of the atom is due to the presence of electrons so we can say that electron is a fundamental particle that has one unit negative charge.
Electrons were discovered from cathode rays. When high voltage is passed between the electrodes it was found that at very low-pressure rays from the cathode were passed to the hole of the anode which had faint greenish color. These were called cathode rays and carry a negative charge (because of the presence of electrons).
The charge of the electron is $-1.6\text{ x 1}{{\text{0}}^{-19}}$C and the mass of electron is $9.11\text{ x 1}{{\text{0}}^{-28}}$g.
So, the ratio of mass of proton to the mass of electron is:
$\dfrac{1.67\text{ x 1}{{\text{0}}^{-24}}}{9.11\text{ x 1}{{\text{0}}^{-27}}}=1835$
So, the mass of the proton is 1835 times heavier than the mass of the electron.
So, the correct option is (a)- 1835 times.
Note: Both the rays i.e., anode rays and cathode rays travel in a straight line. The mass of both particles was calculated by dividing the charge to the ratio of charge/mass:
$m=\dfrac{e}{e/m}$ .
The ratio of charge/mass of a proton is $9.58\text{ x 1}{{\text{0}}^{4}}C/g$and that of the electron is $1.76\text{ x 1}{{\text{0}}^{8}}C/g$.
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