A charged particle moves in a region of uniform magnetic field along a helical path (radius = 5.0 cm, pitch = 12 cm, period = 15.2 ms). What is the speed of this particle? %3D %3D B. ll 2r-
Q: An electron moves along the z-axis with vz=3.8x107m/svz=3.8x107m/s. As it passes the origin, what…
A:
Q: A charge q = 4.0 × 107 C is distributed uniformly around a thin ring of radius r = 6.3 cm. The ring…
A: Charge,q=4×10-7 C Radius of ring, r=6.3cm =0.063m Angular speed, ω=300 rad/s we want to determine…
Q: A compass originally points North; at this location the horizontal component of the Earth's magnetic…
A:
Q: A +5-µC charge is traveling along the x-axis at a speed of 1.0 x 104 m/s. It enters a region of…
A:
Q: The electron in the following figure is at a speed of 22 m/s through a magnetic field with a…
A: Given: The speed of the electron is 22 m/s. The strength of the magnetic field is 1 T.
Q: a. A long straight wire carries a current of 4 A. An electron is traveling in the vicinity of the…
A: Given: The current in the wire is I=4 A The charge of the electron e=1.6×10-19 C The speed of the…
Q: four long straight wires are perpendicular to the page, and their cross sections form a square edge…
A: We will first find net magnetic field at 4 due to 1,2 and 3. Then we will use the formula…
Q: You observe an electron moving on your screen in a clockwise circle of radius 9.09 cm, at a constant…
A: Radius, R = 9.09 cm = 0.0909 mSpeed, V = 9.72 x 10^6 m/sField, B = ?
Q: A cyclotron is a machine with a pair of large disc magnets that is used to store a beam of protons…
A: Step 1: Step 2: Step 3: Step 4:
Q: Assume a charged particle follows a circle of radius 45 pm when it enters in a region of magnetic…
A: Kinetic energy = K=6.7×10-21 J Radius = r=45×10-6 m Magnetic force will provide the necessary…
Q: A magnet in the form of a cylindrical rod has a length of 4.90 cm and a diameter of 0.920 cm. It has…
A:
Q: Q41. A conducting wire with a current of I = 2.00 A forms a circular arc with a radius of r = 10.0…
A: A conducting wire with a current I = 2A form a circular arc of radius 10cm.
Q: A negatively charged ion with an excess electron moving with a velocity vx = 1.095 x103 m/s is…
A:
Q: This time I1 = 1.31, I2 = 4.33 A, and the two wires are separated by 4.74 cm. Now consider the…
A: Given : I1= 1.31 A I2= 4.33 A q=2.18 × 10-6C d= 8.26 cm= 0.0826 m r= 4.74 cm= 0.0474 m V0=72.5 m/s
Q: A proton moves perpendicular to a uniform magnetic field B at a speed of 2.50 x 10' m/s and…
A:
Q: An electron moves with a speed of 2.5×107 m/sm/s in the directions shown in the figure. A 0.40 TT…
A: The magnitude of the magnetic force in figure (a) = 1.6x10-12 NThe direction of the magnetic force…
Q: A 3.0 uC charge moves horizontally due east with a speed of 4.0*10^5 m/s. A magnetic field of 1.2 T…
A:
Q: |Q4: What is the magnitude of the magnetic force (in uN) on a charge particle (Q=AµC) moving with a…
A:
Q: An electron (q = 1.6x10-¹⁹C) is moving at 2.5x105 m/s along the positive x axis. The region of space…
A: Given data: Charge (q) = 1.6×10-19 C Velocity (v) = 2.5×105 m/s Magnetic field (B) = 0.5 T Angle…
Q: The aurora is caused when electrons and protons, moving in the earth's magnetic field of =5.0x10-5…
A:
Q: A magnet in the form of a cylindrical rod has a length of 5.96 cm and a diameter of 1.28 cm. It has…
A: Given: M=5.96×103A/m L=5.96 cm Formula used: μ=MV V=πr2L μ=Mπr2L
Q: A negatively charged ion with an excess electron moving with a velocity vy = 1.095 x10³ m/s is…
A: when charge q of mass m moving with speed v is subjected to the magnetic field B then the charge…
Q: a1/ A proton moving at 4.00 × 10“ m/s through a magnetic field of magnitude 1.70 T experiences a…
A:
Q: particle with charge 3.94 x 10^-6 C moves at 7.73 x 10^6 m/s through a magnetic field of strength…
A:
Q: I₁ 12
A:
Q: In the figure, two long straight wires are perpendicular to the page and separated by distance d, =…
A:
Q: In an old-fashioned television, a beam of electrons is accelerated to a speed of 2.3 × 106 m /s and…
A: Given data: v=2.3×106 m/sd=0.05 mme=9.1×10-31 kgB=1.5×10-4 T
Trending now
This is a popular solution!
Step by step
Solved in 3 steps
- A wire carrying 9.2 A of current is bent into a circular arc with a radius of 0.5 cm. The magnetic field at the center of the arc is 9.7 X 10 T. What arc does the wire sweep out? radiansA particle of mass m=3.1×10−5kg and charge q=43μC moves with a velocity v⃗ =−2.1×104ms−1 i^ along the x axis. a) Find the magnitude of magnetic field created by this charged particle at a distance d=37cm from the x axis. Draw a schematic diagram. b) Now, if the charged particle moves in an uniform external magnetic field, B⃗ =−3.8T k^ , then calculate the magnetic force experienced by the charged particle in unit vector notation. x component of the magnetic force y component of the magnetic force z component of the magnetic force c) What will be the shape of the path of the charged particle moving in the uniform external magnetic field. Draw a schematic diagram and calculate a geometric quantity that can help you explain the path. d) Along with the external magnetic field, if we now apply an external electric field on the charged particle in a particular direction - the particle moves in a stright line. Explain why. And calculate the external electric field in unit vector notation.…Two particles have the same charge (q1=q23D1.6x10-1C) and different masses undergo circular motion in a constant magnetic field (B = 0.40 T) with the same speed of 5x10° m/s. If their circular paths differ in radius by 4.9 cm, what is the difference in the mass of these two particles? m2 ml a. 8.18 x10^(-28) kg O b. 7.11 x10^(-28) kg Oc 6.27 x10^(-28) kg O d. 5.00 x10^(-28) kg O e. 9.21 x10^(-28) kg G-Guard O O