A straight conductor is moving with a velocity of 3 m/s at right angles to a magnetic field of induction equal to 4.5 x 10"Wb/m². If an e.m.f. developed between its ends is 1.35 x 10 volts. What must be its length ?
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Q: A velocity selector in a mass spectrometer uses a 0.120 T magnetic field. (a) What electric field…
A: Given Magnetic Field B =0.120 T Velocity v = 4.50 x 106 m/s Distance D = 1.00 cm = 1.00 x 10-2 m
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A: Given value--- No. of turns = 69. Area = 20 cm2. Resistance = 5 Ohm. Magnetic field = 3 × 10-2 T.…
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Q: A 15-turn circular loop of wire is placed into a magnetic field with initial magnitude 1.2 T. Over a…
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Q: solenoid of 35 turns and area 20 cm2 has its ends connected together though a resistance of 5 Ohms.…
A: Given number of turns N = 35 area A = 20 cm2 = 20 × 10-4 m2 resistance R = 5 ohm magnetic flux…
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A: Magnetic field.
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Q: A velocity selector in a mass spectrometer uses a 0.12 T magnetic field. (a) What electric field…
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A: (a) Calculate the magnitude of the electric field from relation, Here, is the velocity, is the…
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Q: Consider a straight conductor of length 6.3 cm. The conductor moves at right angles to a magnetic…
A: length of conductor,l=6.3 cm=6.3 x 10-2 mmagnetic field strength, B=10-3 Te.m.f. = 2.5 x 10-5…
Q: A velocity selector in a mass spectrometer uses a 0.130 T magnetic field. a. What electric field…
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Q: A straight conductor of length I moves with an acceleration a = 0.1 ms2 at right angles to a…
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- Problem 22: A proton moves in a circular path of the same radius as a cosmic ray electron moving at 9.5 × 106 m/s perpendicular to the Earth’s magnetic field at an altitude where the field strength is 1.0 × 10-5 T. Part (a) What will the speed of the proton be in m/s? vp = ______ Part (b) What would the radius of the path be in meters if the proton had the same speed as the electron? rp,v = ______ Part (c) What would the radius be in meters if the proton had the same kinetic energy as the electron? rp,E = ______ Part (d) What would the radius be in meters if the proton had the same momentum as the electron? rp,p = ______Suppose that an ion source in a mass spectrometer produces doubly ionized gold ions (Au2+), each with a mass of 3.27 x 10-25 kg. The ions are accelerated from rest through a potential difference of 0.793 kV. Then, a 0.523-T magnetic field causes the ions to follow a circular path. Determine the radius of the path.A charge moves out of a radiation source with the velocity to the left. Once it enters a uniform magnetic field B it moves upward. What is the type of charge
- What is the magnitude and direction of the acceleration on the electron in a 3T magnetic field ( -k) and an 800 V/m (-j) electric field, shown below (neglecting gravity), if its velocity is 300 m/s? X X X B= 3.0 T X X X X X X X X X X E=800 V/m 3.512 EE+13 m/s2 (j) -3.512 EE+13 m/s2 (j) 3.512 EE-13 m/s2 (k) 2.489 EE+13 (j) -2.489 EE+13 (j)Suppose that an ion source in a mass spectrometer produces doubly ionized gold ions (Au2+), each with a mass of 3.27 × 10-25 kg. The ions are accelerated from rest through a potential difference of 1.70 kV. Then, a 0.510-T magnetic field causes the ions to follow a circular path. Determine the radius of the path.Consider a straight conductor of length 9.7 cm. The conductor moves at right angles to a magnetic field of uniform strength B = 10-3 T generating e.m.f. of 2.5 × 10-³ V. Calculate the velocity of the straight conductor. Give your answer in SI units. Answer: Choose... +
- A 1450 turn coil of wire, 6.16 cm in diameter, is in a magnetic field that drops from 0.723 T to 0 T in 41.9 ms. The axis of the coil is parallel to the field. What is the emf (in V) of the coil?Crossed electric and magnetic fields have magnitudes of 4.65 V/m and 74.5 mT. Find the speed at which electrons moving perpendicular to both fields can travel through them without being deflected?ASAP