lons having equal charges but masses of M and 4M are accelerated through the same potential difference and then enter a uniform magnetic field perpendicular to their path. If the lighter ions follow a circular arc of radius R, what is the radius of the arc followed by the heavier ions? O R/V2 4R R/2 2R V2R Two identical point charges +5.13x10 C are placed at two neighbouring corners of a square. The length of each side of the square is 16 m. Find the electric potential at an empty corner of the square (not occupied by the point charges) in kV. The Coulomb's law constant-k-8.99x10°Nm²/c?. Assume the potential at an infinite distance from the charges is zero. 2.81 2.34 4.92 6.39 1.99

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Chapter1: Units, Trigonometry. And Vectors
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lons having equal charges but masses of M and 4M are accelerated through the same potential difference and
then enter a uniform magnetic field perpendicular to their path. If the lighter ions follow a circular arc of radius R.
what is the radius of the arc followed by the heavier ions?
O R/V2
4R
O R/2
2R
Two identical point charges +5.13×10C are placed at two neighbouring corners of a square. The length of each
side of the square is 16 m. Find the electric potential at an empty corner of the square (not occupied by the
point charges) in kv. The Coulomb's law constant-k-8.99x10°Nm?/C?. Assume the potential at an infinite
distance from the charges is zero.
2.81
2.34
4.92
6.39
1.99
Transcribed Image Text:lons having equal charges but masses of M and 4M are accelerated through the same potential difference and then enter a uniform magnetic field perpendicular to their path. If the lighter ions follow a circular arc of radius R. what is the radius of the arc followed by the heavier ions? O R/V2 4R O R/2 2R Two identical point charges +5.13×10C are placed at two neighbouring corners of a square. The length of each side of the square is 16 m. Find the electric potential at an empty corner of the square (not occupied by the point charges) in kv. The Coulomb's law constant-k-8.99x10°Nm?/C?. Assume the potential at an infinite distance from the charges is zero. 2.81 2.34 4.92 6.39 1.99
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