1400 N C' between two charged metal plates at right angles to the field as shown in the diagram. The charge has been deflected vertically by 3.5 cm (0.035 m) by the time it leaves the plates. Positive charged Particle KE=131 J 3.5 cm deflection
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- three point charges are aligned from the x-axis as shown in the figure below. What is the net electric field at the location x = 2.0 m, y = 0?Three point charges are aligned along the x axis as shown in the figure below. -0.500 m- -4.00 nC (a) (0, 1.40 m) E = 14.6 X 0.800 m- 5.00 nC Find the electric field at the following position. (Enter your answer as a sum of i-hat and j-hat vectors.) N/C 3.00 nC xCoulomb’s law for the following problem use k = 9 x 10^9 N.m^2/C^2
- Two point charges Q₁ = 3.27 nC and Q2 = -3.02 nC are shown in the figure. Q₁ is located at (-2.1 cm, 0.0 cm) while Q2 is at (0.0 cm, 2.6 cm)). from the charges? very far away If a proton is released from rest at the origin, how fast will it be moving when it is V = If an electron has a speed of 6.52 × 106 very far away from the charges shown above, how fast would it be moving at the origin? V =Two particles A and B with charges of +16 C and +36 C are separated by a distance of 4 cm. If C is a point that lies between A and B such that the field strength at C is zero. The location of C from A (in cm) is…. OptionA. 1.2B. 1.4C. 1.6D. 1.8E. 2.0 Please answer fast max 15-20 minutes thank uWhat is the resultant magnitude and direction of the force on a 7 μC charge situated on the y-axis, 4 cm from the point of origin, due to a pair of 3 μC charges located on the x-axis at opposite sides of the point of origin, each at distance of 4 cm from the point of origin? O a. 85.4 N O b. 83.4 N O c. 27.8 N O d. 83.4 N O e. 82.4 N
- The drawing shows two situations in which charges are placed onthe x and y axes. They are all located at the same distance of 6.1 cm from theorigin O. For each of the situations in the drawing, determine the magnitudeof the net electric fi eld at the origin.Calculate the magnitude and direction of the Coulomb force on 6.00 uC charge shown in Figure 3 6.00 jaC 1.50 C -2.00 C 3.00 cm- 2.00 cm- Figure3