A thin conducting wire is bent into the shape shown in the figure. The circular portion of the wire has radius 34.0 cm. The wire is in the plane of the screen and carries a current 1.60 A. What is the magnetic field at the center of the loop? (Give the magnitude in µT and select the direction from the options provided.)
Q: An electron is shot into the uniform magnetic field shown. Draw the path that the electron will…
A: When an electron enters a uniform magnetic field, this magnetic field exerts a force on the electron…
Q: A toroid with a square cross section 3.0 cm x 3.0 cm has an inner radius of 25.0 cm. It is wound…
A: Given that-Cross- sectional area of toroid is 3.0cm ×3.0 cmRadius of the coil is 25.0 cmNumber of…
Q: A thin conducting wire is bent into the shape shown in the figure. The circular portion of the wire…
A:
Q: A proton is accelerated from rest through a potential difference of 3500 volts. Then it enters a…
A:
Q: me of the magnetic field at the center of the square? Express it in unit vector notations. o: Tihee…
A:
Q: The force on a loop of wire in a magnetic field shown in the attached image can be used to measure…
A: Step 1:Step 2:
Q: Imagine the xy coordinate plane is the plane of the page. A wire along the z-axis carries current in…
A: We know that a current-carrying conductor induces a magnetic field around it and the direction of…
Q: In the figure, point P2 is at perpendicular dístance R = 28.2 cm from one end of straight wire of…
A:
Q: Please don't provide handwritten solution ...
A: Step 1:Length is 10cmCurrent is 8AStep 2:From the principle of superposition F4=F14+F24+F34…
Q: The wire in (Figure 1) carries current I2, which is 15 times the current I1 of the loop; the…
A:
Q: In the figure, part of a long insulated wire carrying current i = 7.30 mA is bent into a circular…
A: Current, I = 7.3×10-3 ARadius, R = 0.0135 m Vacuum permeability, µ0 = 4π×10-7 H/m (a) Bx = 0By = 0Bz…
Q: Two long straight current-carrying wires both have currents of 131.2 T directed to the right. The…
A: The magnetic field at distance R due a current carrying conductor is given as B=μ0I2πRB1=4π×10-7…
Q: thin conducting wire is bent into the shape shown in the figure. The circular portion of the wire…
A: magnetic field due to wire is Bwire=μ0I2πr
Q: 12 R
A:
Q: In the figure below the wire carries current 2.0 A, and the loop carries current 3.0 A in the…
A:
Q: For the current carrying wire shown in the figure below, I = 25.1 A, r1 = 5 cm, and r2 = 10 cm. The…
A: In the given problem, there are a number of arrangements that will give rise to a magnetic field at…
Q: A single circular loop of radius 0.23 m carries a current of 2.6 A in a magnetic field of 0.95 T.…
A: Given in question - Number of loop(n) = 1 The radius of loop(r) = 0.23m Current(i) = 2.6A Magnetic…
Q: A thin conducting wire is bent into the shape shown in the figure. The circular portion of the wire…
A:
Q: A thin conducting wire is bent into the shape shown in the figure. The circular portion of the wire…
A:
Q: Consider the figure shown with current 1 = 3.0 A and current 2 = 1 A. What is the magnetic field…
A: Given I1=3.9A, I2=1.0A L=3.0cm=0.03m b=6.00cm=0.06m Let's take vertical direction on paper as…
Q: dB = The vector 7 points from the source (the current, or location S) to the location of interest…
A:
Q: The cylinder shown represents a cross-section of a long straight hollow wire with inner radius a and…
A:
Q: Four long straight wires are at the corners of a square. The currents are not all in same direction,…
A: Given : Four long straight wires are at the corners of a square. The currents are not all in same…
Q: A coaxial cable consists of a long thin wire surrounded by a cylindrical conductor of radius 5mm. A…
A: Given information: Here, I is current in the wire and in the conductor, R is the conductor’s radius…
Q: A wire carrying 1.5 A passes through a 48-mT magnetic field. The wire is perpendicular to the field…
A:
Q: The segment of wire in the figure carries a current of I=8.00 A, where the radius of the circular…
A: Given, Current,I=8ARadius,R=4cm=4×10-2mμ0=12×10-7H/mπ=3 We have to calculate the magnetic field, We…
Q: Consider the current-carrying wire shown in the figure. The current creates a magnetic field at the…
A: Note that the radial sections of the wire does not contribute any field at P. Only circular section…
Trending now
This is a popular solution!
Step by step
Solved in 2 steps with 1 images
- A wire carrying a current is shaped in the form of a circular arc of angle 60° and radius 5.0 mm. If the magnetic field strength that this current produces at point A in the center of the arc is 22.0 µT, what is the magnitude of the current that flows through the arc? Give your answer in Amp. If the B field at A is out of the page, what is the direction of the current on the arc of wire? (select one of the following: cw, ccw, right, left, into or out) A 9 MEA coaxial cable consists of a long thin wire surrounded by a cylindrical conductor of radius 5mm. A current of 30A flows to the right in the wire and an equal current flows to the left in the outer conductor. Find the magnetic field using Amperes Law at a point 3.5 mm from the central wire, and a point 3.5 cm from the central wire. Draw the magnetic field lines.In the figure, four long straight wires are perpendicular to the page, and their cross sections form a square of edge length a 17.5 cm. Each wire carries 7.50 A, and the currents are out of the page in wires 1 and 4 and into the page in wires 2 and 3. In unit-vector notation, what is the net magnetic force per meter of wire length on wire 4? Number i ! Units N/m
- A wire carries current 45.1 A into the junction as shown above. What is the magnetic field (in T) at d = 64.7 cm?The two insulated wires in the diagram above cross at a 30° angle but do not make electrical contact. Each wire carries 7.01 A current. Point 1 is 5.27 cm from the intersection and equally distant from both wires. What is the magnitude of the magnetic field (in T) at point 1?Consider the current-carrying wire shown in the figure. The current creates a magnetic field at the point P, which is the center of the arc segment of the wire. If 0 = 20.0°, the radius of the arc is 0.700 m, and the current is 5.00 A, what are the magnitude (in nT) and direction of the field produced at P? magnitude direction 2.49 X Apply the Biot-Savart law. What will be the contributions of the segments of wire along the straight-line sections? Hint: what is ds x Î for each segment? nT into the screen Need Help? Submit Answer Read It
- In the figure below, point P is at a perpendicular distance a = 13 cm from one end of a straight wire of length L = 15 cm carrying current I = 6 A. (Note that the wire is not long, or infinite.) What are the magnitude and direction of the magnetic field at P? For direction, you can say into or out of the page.A long, straight conductor carries a current of 8.0 A and is directed to the right.What is the magnitude of the magnetic field produced by the current-carrying wire 2.0 m from the wire? (See figure below) Draw the magnetic field to determine the direction of the field at the specified point P.Two long straight current carrying wire both have currents of 235 A directed to the right. The wires are laid parallel to one another and are separated by a distance of 0.028 m. What is the net magnetic field at a distance of 0.02 m above the top wire? Enter a number rounded to 4 decimal places
- A current i = 2.0 A flows in a long straight wire and in a circular loop as indicated in the figure below. If the distance a = 3.0 cm, what is the magnitude of the magnetic field at point P at the center of the loop? Express your answer to the nearest µT.help what is the answer?= 6.80 A and the wire lies in the plane of the rectangular loop, which carries a current I, = 10.0 A. The dimensions in the figure are In the figure below, the current in the long, straight wire is I, 0.100 m, a = 0.150 m, and { C = 0.420 m. Find the magnitude and direction of the net force exerted on the loop by the magnetic field created by the wire. magnitude direction to the left