2. THE ELECTRIC FIELD OF A SINGLE CHARGE. Charge Q and has magnitude value 2.00x10-¹9 C. DISTANCE D = -12 0.500 x10 m in fig. 1 below. D b fig. 1 Point b is at the top of a right triangle. Reference the right-handed x-y axes shown here as needed. (a) At point b, what is the y-component Eynet of the net electric field due to Q? Show work. (b) field due to Q? (c) At point b, what is the direction of the net electric field due to Q? WHAT ANGLE DOES THE ELECTRIC FIELD VECTOR MAKE WITH THE X-AXIS AND IN WHAT QUADRANT DOES THE ELECTRIC FIELD VECTOR POINT? At point b, what is the magnitude of the net electric field At point b, what is the x-component Ex of the net electric xnet (d) due to Q? (e) SKETCH THE ELECTRIC FIELD VECTOR ON THE X- Y AXES SHOWN ABOVE THE TAIL OF THE ELECTRIC FIELD VECTOR IS AT THE ORIGIN OF THE AXES. LABEL THE ANGLE WITH THE X AXIS.
2. THE ELECTRIC FIELD OF A SINGLE CHARGE. Charge Q and has magnitude value 2.00x10-¹9 C. DISTANCE D = -12 0.500 x10 m in fig. 1 below. D b fig. 1 Point b is at the top of a right triangle. Reference the right-handed x-y axes shown here as needed. (a) At point b, what is the y-component Eynet of the net electric field due to Q? Show work. (b) field due to Q? (c) At point b, what is the direction of the net electric field due to Q? WHAT ANGLE DOES THE ELECTRIC FIELD VECTOR MAKE WITH THE X-AXIS AND IN WHAT QUADRANT DOES THE ELECTRIC FIELD VECTOR POINT? At point b, what is the magnitude of the net electric field At point b, what is the x-component Ex of the net electric xnet (d) due to Q? (e) SKETCH THE ELECTRIC FIELD VECTOR ON THE X- Y AXES SHOWN ABOVE THE TAIL OF THE ELECTRIC FIELD VECTOR IS AT THE ORIGIN OF THE AXES. LABEL THE ANGLE WITH THE X AXIS.
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