Direclon: Suppose a frend asks you to explain how electric potential relates to potential energy. Wnite a brief explanation that you could use to explain this concept to a friend who do not understand the relationship between two concepts.
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- The three charges in the figure below are at the vertices of an isosceles triangle. Let q = 5.50 nC and calculate the electric potential at the midpoint of the base. (Let d₁ = 1.50 cm and d₂ = 5.50 cm.) kV do 9What is potential difference (delta V)? Why is infinity used as a reference point to measure a potential difference in some cases?The topic is related to electric potentialUCF PHY2054 Post Lab - Unit 04 Relating Field to Equipotential Lines Consider this field to be an electric field produced by a negatively charged sphere. Recall that an equipotential line consists of points that all have the same potential. So, when a charge moves along an equipotential line, it neither gains nor loses potential energy. Draw the equipotential line through point G, making sure it contains all 1. points on the page that have the same potential as G. Explain your reasoning. Draw the equipotential line through point H. 2. Censide lectric fold INIA PIN VICTORIAS S
- A) Find the electric potential at point P in the figure B) Suppose the three charges shown in the figure are held in place. A fourth charge, with a charge of +5.32 μC and a mass of 5.23 g, is released from rest at point P. What is the speed of the fourth charge when it has moved infinitely far away from the other three charges?Question 1. Two charges of 1.0µC and -2.0µC are 0.50 m apart at two vertices of an equilateral triangle as in Figure 1. a) What is the electric potential due to 1.0µC charge at the third vertex, point P? b) What is the electric potential due to the -2.0µC charge at P? c) Find the total electric potential at P. d) What is the work required to move a 3.0µC charge from infinity to P? P 0.50 m, 0.50 m 0.50 m 1.0 μC -2.0 µC Figure 1:For the following situations, consider moving a positive charge from very far away to the origin along the y-axis. For which situation would you do the most work?