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Questions: R 1) Two resistors are connected to each other in parallel, one resistor has a known value of R, the resistance of
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Answer #1

Solution of 1:

We are given two resistors are connected in parallel combination, one resistor has a known value of R , the value of second resistor R_{x} is unknown, and the equivalent resistance of parallel combination is R/2 :

2 = R R R.

\therefore \frac{1}{R_{x}}=\frac{2}{R}-\frac{1}{R}

{\color{Blue} \therefore \frac{1}{R_{x}}=\frac{1}{R}}

{\color{Blue} \therefore R_{x}={R}}

Therefore, the correct option is (A) {\color{Blue} {R}}

Solution of 2:

The magnetic force F_{m} is given as:

F_{m}=q(\overrightarrow{v}\times \overrightarrow{B})

The electric force F_{e} is given as:

F_{e}=qE

The total force F on the charged particle is given as:

F=F_{e}+F_{m}

\therefore F=qE+q(\overrightarrow{v}\times \overrightarrow{B})

\therefore F=qE+q(vB\ sin\theta)

Here, q is the charge of the particle, E is the electric field, v is the velocity of the particle, B is the magnetic field, and \theta is the angle between velocity vector and magnetic field vector.

Therefore, the magnetic force depends on the velocity vector \overrightarrow{v} . When sin90\degree=1 , the magnetic field vector and velocity vector is perpendicular to each other and magnetic force is maximum. When sin0\degree=0 , the magnetic field vector and velocity vector is parallel to each other and magnetic force is zero.

When electric force F_{e} and magnetic force F_{m} are equal, and sin90\degree=1 , the velocity v is given as:

\therefore F_{e}=F_{m}

\therefore qE=qvB

{\color{Blue} \therefore v=\frac{E}{B}}

This is used to select a charged particle of a particular velocity from charges moving with different speeds which is called the velocity selector and therefore, the correct option is (B) Velocity of a charged particle leaving a velocity selector is equal to {\color{Blue} v=E/B} .

Solution of 3:

Since velocity vector \overrightarrow{v} , magnetic field B , and electric field E are always perpendicular to each other, therefore, the correct option is (E) The direction of force on positive or negative charge would be the same.

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