Shown in the figure below is a collection of two charges labeled as q, and q2. Also labeled is the "Point P", which is where we will do our calculations. To understand the notation, please note the following: 92 (X2, Y2) 91 (X1, 0) (Xp, 0) not to scale • The vector E¡ means the electric field at P due only to q1- • The vector E, means the electric field at P due only to q2- • The vector Etot means the total electric field at P due to all charges. Item Charge (C) (х,у) m ( 6.63 , 0.00 ) P None q1 -6.14e-06 (-2.13 , 0.00 ) q2 3.47e-06 (1.40 , 2.71 ) Determine the distance from q, to P: r = Determine the distance from q, to P: rɔ = Determine the magnitude of E1. | E¡ | = Determine the magnitude of E2. | E2 | = Fill in the following table with all the appropriate components: Item x-component (N/C) y-component (N/C) E1 E2 Etot
Shown in the figure below is a collection of two charges labeled as q, and q2. Also labeled is the "Point P", which is where we will do our calculations. To understand the notation, please note the following: 92 (X2, Y2) 91 (X1, 0) (Xp, 0) not to scale • The vector E¡ means the electric field at P due only to q1- • The vector E, means the electric field at P due only to q2- • The vector Etot means the total electric field at P due to all charges. Item Charge (C) (х,у) m ( 6.63 , 0.00 ) P None q1 -6.14e-06 (-2.13 , 0.00 ) q2 3.47e-06 (1.40 , 2.71 ) Determine the distance from q, to P: r = Determine the distance from q, to P: rɔ = Determine the magnitude of E1. | E¡ | = Determine the magnitude of E2. | E2 | = Fill in the following table with all the appropriate components: Item x-component (N/C) y-component (N/C) E1 E2 Etot
Chapter5: Electric Charges And Fields
Section: Chapter Questions
Problem 101P: In this exercise, you practice electric field lines. Make sure you represent both the magnitude and...
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