GQ4 Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m² /CVacuum permitivity, eo = 8.854 × 10-12 F/rMagnetic Permeability of vacuum, µo = 12.566370614356 × 10-7 H/rMagnitude of the Charge of one electron, e = -1.60217662 × 10–19 (Mass of one electron, me = 9.10938356 × 10-31 kgUnless specified otherwise, each symbol carries their usual meaning. For example, µCmeans micro coulomb B, di O B2 dz In the figure the blue region represents a magnetic field B1 = 5.4 Tand the green region represents a magnetic field B2 = 7.0TA particle with charge q = 7.1 µG mass m = 0.024 gramand velocity v = 10 m/travels toward the blue region as shown in the figure. a)What will be the shape of the path followed by the charge? Explain why this particular shape. b)Draw a schematic diagram to show the direction of the force for this system. c)Calculate the angular frequency of the particle when it is in the blue and when it is in the green region. What will happen to the angular frequency in the blue region if we double the velocity of the particle? angular frequency in blue region Give your answer up to at least three significance digits. rad/s angular frequency in green region Give your answer up to at least three significance digits. rad/s

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Kindly give me a detailed answer in a clear handwriting of the subpart 'd' by mentioning the subpart's name. It is one whole question including the formulas. All the subparts are related. I am attaching the full question. All the questions are related. This is my second time uploading these questions as I got wrong answers previously. So kindly answer this one by following the given instructions. I will upvote if the answer is correct. Thank you. Download the question so that you can read it. I only have few minutes.

GQ4
Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m² /CVacuum permitivity, 6o = 8.854 × 10-12 F/nMagnetic
Permeability of vacuum, µo = 12.566370614356 × 10-7 H /nMagnitude of the Charge of one electron, e = -1.60217662 × 10¬19 CMass of one
electron, me = 9.10938356 × 10-31 kgUnless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb
O B,
di
In the figure the blue region represents a magnetic field B1 = 5.4Tand the green region represents a magnetic field B2 = 7.0TA particle with charge
q= 7.1 µGmass m =
0.024 granand velocity v =
10 m/travels toward the blue region as shown in the figure.
a)What will be the shape of the path followed by the charge? Explain why this particular shape.
b)Draw a schematic diagram to show the direction of the force for this system.
c) Calculate the angular frequency of the particle when it is in the blue and when it is in the green region. What will happen to the angular frequency in
the blue region if we double the velocity of the particle?
angular frequency in blue region
Give your answer up to at least three significance digits.
rad/s
angular frequency in green region
Give your answer up to at least three significance digits.
rad/s
d)Will it be able to leave the blue region if h
= 5.476
If YES then calculate the minimum value of h for which it will not enter green region.
If NO then calculate the maximum value of h for which it will enter green region.
Transcribed Image Text:GQ4 Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m² /CVacuum permitivity, 6o = 8.854 × 10-12 F/nMagnetic Permeability of vacuum, µo = 12.566370614356 × 10-7 H /nMagnitude of the Charge of one electron, e = -1.60217662 × 10¬19 CMass of one electron, me = 9.10938356 × 10-31 kgUnless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb O B, di In the figure the blue region represents a magnetic field B1 = 5.4Tand the green region represents a magnetic field B2 = 7.0TA particle with charge q= 7.1 µGmass m = 0.024 granand velocity v = 10 m/travels toward the blue region as shown in the figure. a)What will be the shape of the path followed by the charge? Explain why this particular shape. b)Draw a schematic diagram to show the direction of the force for this system. c) Calculate the angular frequency of the particle when it is in the blue and when it is in the green region. What will happen to the angular frequency in the blue region if we double the velocity of the particle? angular frequency in blue region Give your answer up to at least three significance digits. rad/s angular frequency in green region Give your answer up to at least three significance digits. rad/s d)Will it be able to leave the blue region if h = 5.476 If YES then calculate the minimum value of h for which it will not enter green region. If NO then calculate the maximum value of h for which it will enter green region.
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