As shown in the figure, the three charges q1 = 93 = 92 22u,92=-2uC are located at the vertices of the triangle and a = 0.1 m. Find the x,y components of the net electrical force acting on 93. 92 91 F23 93 (a) The X ingredient is F3x = (b) The y component is F3y = Ida. Ida.
Q: 9: = 4µC 50cm 4 =-7µC 4, = 3µC 10cm
A: Force between two point charges F= k q1 q2 /r2
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A: Q2 = 50 μC Q3 = 65 μC Q1 = -86 μCθ1 = 30od23 = 30 cm = 0.3 m d13 = 60 cm = 0.6 m
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A: the force between twocharge particle is given by Coulombs law F=k(q1q2)/r^2
We know that electric force is given by
Where are the 2 charges and
is the separation between them.
We find the force due to each charge. We then resolve it in rectangular components. We then find the net force's components along x and y direction.
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- The drawings show three charges that have the same magnitude but may have different signs. In all cases the distance d between the charges is the same. The magnitude of the charges is lal=9.1 µC, and the distance between them is d=4.6 mm. Determine the magnitude of the net force on charge 2 for each of the three drawings. d d 2 (b) d +q 1 (c) 2 Id +9Three charges, q1 = -0.600μC, q2 = +1.00μC, and q3 = +0.800μC are located at (-1.00m, +2.0m), (+2.00m, +2.0m), and (+5.00m, +2.00m). a) Calculate the magnitude and direction of the net electric force on q1 due to the other two charges b) Calculate the magnitude and direction of the acceleration on q1 given the mass of the charge is entirely due to charge on q1 c) Determine the magnitude and direction of the electric field at a location of P (-1.0m, 0.0m) due only to q1 and q2.The figure below shows three small, charged spheres, all lying along the horizontal axis. Sphere A, at left, has a 6.90 nC charge. Sphere B has a 1.40 nC charge and is 3.00 cm to the right of A. Sphere C has a −2.80 nC charge and is 2.00 cm to the right of B. Find the magnitude (in N) and direction of the net electric force on each of the spheres. Three charges lie along a horizontal line. A positive charge labeled qA is on the left. 3.00 cm to its right is a positive charge labeled qB. 2.00 cm to the right of qB is a negative charge labeled qC. Net Force on A magnitude Ndirection Net Force on B magnitude Ndirection Net Force on C magnitude Ndirection
- Three charges are arranged as shown in the figure below. Find the magnitude and direction of the electrostatic force on the charge q = 4.76 nC at the origin. (Let r12 = 0.240 m.)Three point charges lie along the axes in the x y-coordinate plane.Positive charge q is at the origin.A charge of 6.00 nC is at (r1 2, 0), where r1 2 > 0.A charge of −3.00 nC is at (0, −0.100 m).In the figure four particles form a square with edge length a = 2.42 × 102 m. The charges are q₁ = 94 = 1.69 × 10-15 C and 92 = 93 = q. (a) What is q if the net electrostatic force on particle 1 is zero? (b) Is there any value of q that makes the net electrostatic force on each of the four particles zero? The tolerance is ± 1 in the 3rd significant digit. a) Number b) No. a 3 X 4 a ! Units CThree charged particles form an equilateral triangle with side length d = 1.0 cm. The values of the charges are: 91 = +1.0 uC 92 = +1.0 MC 93 = -4.0 MC What is the magnitude of the net force acting on 93? Express your answer to the nearest N.
- Point charges q1 55μC and 92 = - 40μC are placed 0.8 m apart. Hint a. What is the force on a third charge 93 = 15μC placed midway between 9₁ and 92? Force on q3 is 12.656 N, in the direction toward q2 b. Where can q3 be placed so that the net force on it is zero? If q3 is placed near q2 directly opposite from q1 .4319 Question Help: Message instructor Submit Question OF at a distance of " x m from 9₁, the net force on it will be zero. O MacBook Pro= Charges q₁ q2 = 93 = 10.0 μC have positions ₁ 73 = (0.00, 0.00). Calculate the electric force vector on charge q₁. Y 92 1.20 93 1.60 2.00m. qi 36.9° X 1.60 m î+ 1.20 mĵ72 = 1.20 m ĵ, andA 25-turn circular coil has radius of r = 3 [cm] and a resistance of R = 10 [Q]. The coil is in a uniform magnetic field of 0.46 [T] that is perpendicular to the plane of the coil. a. magnetic flux? What is the value of the b. What is the value of the induced emf and the induced current in the coil? lemf| = [V] I = [A] Now, the value of the magnetic field is increasing from 0.46 [T] to 2.1 [T] in At = 1.4 [s]. C. emf? lemf| I = What is the value of the induced [V] d. current in the coil? [A] What is the value of the induced
- Four point charges placed as shown where q1=q3=5uC and q2=q4=-6uC F, cose b=60cm F, sin e F12 a-40cm Fu find the magnitude and direction that acts on q1.Part A (Figure 1) shows five electric charges. Four charges with the magnitude of the charge 2.0 nC form a square with the size a = 1.0 cm. Positive charge with the magnitude of q = 7.0 nC is placed in the center of the square. What is the magnitude of the force on the 7.0 nC charge in the middle of the figure due to the four other charges? Express your answer with the appropriate units. Figure y -2.0 nC a 2.0 nC + q + -2.0 nC 2.0 nC 1 of 1 μÅ ? Fon q = Value Units Submit Previous Answers Request Answer × Incorrect; Try Again; 4 attempts remaining Part B What is the direction of the force on the 7.0 nC charge in the middle of the figure due to the four other charges? Express your answer in degrees to two significant figures. x 0 = ΕΠΙ ΑΣΦ Submit Request Answer ? °, counterclockwise from the positive x-axis