2. (i) Determine the magnitude and direction of net magnetic field, Bnet at point P which is located in the middle between two parallel wires that are 6 cm apart from each other, as shown in Figure 2. 0.8 A Wire 1 P -> Wire 2 1.6 A Figure 2
Q: Aircraft sometimes acquire small static charges. Suppose a supersonic jet has a 0.650 µC charge and…
A: We can calculate the magnitude of the force from the relation F=qvBsinθ here, F=force q= charge v=…
Q: 3. Two long parallel wires are separated by the distance 10cm and carry currents of 3.0 A and 5.0 A…
A:
Q: 8) Three long parallel wires are located as shown in the figure along with their directions and…
A: The current flowing through the first conductor, I1=1A The current flowing through the second…
Q: 4) Two long parallel wires carry currents 3 amps and 5 amps both in the same direction out of the…
A: The given values are,
Q: Two long parallel wires are separated by 2.6m. Each wire has a 32 A current, but the currents are in…
A: GIVEN: Separation distance between wires, d=2.6 m Current in each wire, I=32 A 1) Magnitude of net…
Q: ) Problem 9: A student uses a compass and a current-carrying wire to measure the horizontal…
A: Given, Distance, r=6.5×10-2m Current, i=7.5A a. The magnetic field due to the current in the wire,…
Q: 3) A wire carrying a steady current of 20.0 A is bent at a right angle as shown in the figure below.…
A: In this case, a straight wire is bent at a right angle. So, we have to calculate the magnetic field…
Q: 2. Two long wires carry the same current of 5 A in opposite directions, spaced by 1 cm | as shown 1…
A: The magnitude of the magnetic field is,
Q: 3) A charged particle moves into a region of uniform magnetic field, goes through half a circle, and…
A: Given data- A charged particle moves into a region of uniform magnetic field goes through half a…
Q: 11) What is the initial direction of deflection for the charged particles entering the magnetic…
A: A) charge (q) = + (positive) direction of velocity = along + x axis (i^) direction of magnetic field…
Q: 6) Find the integral expression for the magnetic force on a wire carrying 3.5 amps current on the x…
A:
Q: A proton moving at a speed of 3.8 106 m/s cuts across the lines of a magnetic field at an angle of…
A: A proton moving at a speed of cuts across the lines of a magnetic field at an angle of .The…
Q: A proton moves perpendicular to a uniform magnetic field at a speed o experiences an acceleration of…
A: Given;- A speed of the proton is v = 2.20 x 107 m/s The acceleration of the proton is a = 2.80 x…
Q: A wire carries an I, = 7.35-A current along the x-axis, and another wire carries an I, = 5.65-A…
A:
Q: 4. A thin bar magnet is suspended by a string attached to its midpoint. The magnetic charge at the…
A: Concept used: A torque acts on a magnetic dipole placed in uniform magnetic field. Angle between…
Q: a) The magnetic forces on oppositely charged particles moving at the same velocity in a given…
A: Note:-“Since you have posted a question with multiple sub-parts, we will solve the first three…
Q: Two long straight current-carrying wires are lined up parallel to one another in vacuum at a…
A: Given:The distance between the two wires: dCurrent flowing through wire 1: I1Current flowing through…
Q: 2. Two very long, insulated wires perpendicular to each other in the same x-y plane carry currents…
A: Current in wire in the y plane = I1= 20A (in y direction) Current in wire in the x plane = I2 =15A(…
Q: A moving, positively charge particle enters a region that contains a uniform magnetic field as shown…
A:
Q: parallel to the wire. perpendicular to the wire. around the wire. inside the wire. zero. rrying wire
A: The correct answer is "around the wire." When a current flows through a straight wire, a magnetic…
Q: A proton moves perpendicular to a uniform magnetic field B at a speed of 1.80 x 107 m/s and…
A: Given, speed of proton, v=1.80×107 m/s acceleration of proton, a=1.80×1013 m/s2
Q: 2) In a lightning bolt, a large amount of charge flows during a time of 1.80 ms. Assume that the…
A: Given: t=1.8×10-3 sr=27.0 mB=80×10-6 T
Q: (a 3') Sketch magnetic field lines inside and outse in the following horse-shoe magnet. You must…
A:
Q: In the figure, two long straight wires are perpendicular to the page and separated by distance di =…
A: We need to find the magnitude and direction of current in wire 2 such that the net magnetic field at…
Q: 1. You know that the magnetic field is nonzero in a certain region of space, but the magnitude and…
A:
Q: 7) Wire is wrapped around the equator of an Earth globe of radius 15cm, making ten complete trips.…
A:
Trending now
This is a popular solution!
Step by step
Solved in 2 steps with 2 images
- 1. Two straight parallel wires, running north/south are separated by 10 cm and carry currents of 3A in the same direction (north). a) Find the magnitude and direction of the magnetic field at a point midway between the wires. b) Find the magnetic field 6 cm east of the "easternmost" wire. c) Calculate the force of one wire on the other. Is it attractive or repulsive?16. (25) a.) Two electric charges, qq and q2 lie on the x-axis at positions of + 10 cm and - 10cm, respectively. What is the force on a third charge q3 that is placed at x = 0, if q1 = 10 µC, q2 = -10 µC and q3 = 20 µC? b.) An electron enters a uniform magnetic field whose magnitude is 1.5 T and direction is parallel to the + z-axis. If the electron's velocity is 2.0 î – 3.0 ĵ+1.0 k m/s what is the force on the electron? c.) The magnet in the diagram is moved to the left. Copy the diagram into your blue book and indicate the direction of the induced electric current, which you should find using Lenz's Law. What is the situation some time later, when the magnet has stopped moving? Explain your answers. Lume R6) A charged particle has velocity Jo = vfê + všŷ when it enters a region of uniform magnetic field B = Bââ, setting the particle on a helical motion. a) Determine the radius of the helix. b) Determine the time it takes to complete one full turn of the helix. c) Determine the displacement in the r-direction during the the time to complete one full turn of the helix.