College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- Two small plastic balls hang from threads of negligible mass. Each ball has a mass of 0.230 g and a charge of magnitude g. The balls are attracted to each other, and the threads attached to the balls make an angle of 20.0° with the vertical, as shown in the figure.(Figure 1) Part A Find the magnitude of the electric force acting on each ball. Tempiates Symbols undo redo teset keyboard shortcuts Help F = 0.82 N Submit Prevlous Answere Request Answer x Incorrect, Try Again; 5 attempts remaining Part B Find the tension in each of the threads. Temglates Symbols undo regdo feset keyboard shortcuts Help T = 2.98 N Submit Prevlous Anewera Requeet Answer Figure 1 of 1 x Incorrect; Try Again; 5 attempts remaining Part C Find the magnitude of the charge on the balls. 20.0 Templates Symtols undo redo teset keyboard shortcuts Help /20.0i 2.05 cm Submit Requeet Anewerarrow_forwardA 2.5 g plastic bead charged to -3.2 nC and a 4.3 g glass bead charged to 19.0 nC are 2.5 cm apart (center to center). Part A What are the magnitudes of the accelerations of the plastic bead and the glass bead? Express your answers using two significant figures. Enter your answers numerically separated by a comma. [ΠΙ ΑΣΦ aplastic, aglass = Submit Request Answer Part B The beads accelerate in the same direction. What are the directions of the accelerations of the plastic bead and the glass bead? The beads accelerate toward each other. The beads accelerate away from each other. Submit ? Request Answer m/s²arrow_forwardI Review | Constants | Periodi Part B Consider an initial system of three charges shown in (Figure 1). An object with charge q4 = + 8.0 × 10¬8 C will be moved to position C from infinity (not shown in the figure). q1 = q2 = q3 = +10.0 × 10¬8 C. Determine the final electric potential energy of the system consisting of all four charges, with q4 at position C. Express your answer with the appropriate units, to two significant figures. µA ? - 3 Uaf = 2.1 • 10 J Submit Previous Answers Request Answer X Incorrect; Try Again; 3 attempts remaining Part C Figure 1 of 1 Determine the work done on the system by moving the charge q4 from infinity to point C. Express your answer with the appropriate units, to two significant figures. HA ? 20.0 cm W = Value Units 92 +-20.0 cm C 20.0 cm Submit Request Answer Part D 93arrow_forward
- Pls help me with the following question pls and make sure 100 % of your answer is correct A charge q1�1 = 5.00 nCnC is placed at the origin of an xy��-coordinate system, and a charge q2�2 = -3.00 nCnC is placed on the positive x� axis at x=�= 4.00 cm Part A If a third charge q3�3 = 5.00 nCnC is now placed at the point x=�= 4.00 cm , y=�= 3.00 cmcm find the x� component of the total force exerted on this charge by the other two charges. Express your answer in newtons. ( I got this right, which was -> 7.19 x 10^-5 N) Part B Find the y� component of the total force exerted on this charge by the other two charges. Express your answer in newtons. ( I got this one wrong like the rest, here I got -> -14.624 x 10^-5N)Pls help me explain what could be wrong Part C Find the magnitude of this force. Express your answer in newtons.( I got this answer and it was wrong-> 16.30 x 10^-5N) Part D Find the direction of this force. Express your answer in degrees. (I got this…arrow_forward-2.0 nC | -2.0 nC 1.0 cm + 1.0 nC 2.0 nC + | 1.0 cm + 2.0 nC "L Xarrow_forwardHomework 1, Q7 Please help im not understanding how to do this questionarrow_forward
- Part A An electron moving parallel to a uniform electric field increases its speed from 2.0x10' m/s to 4.0×10 m/s over a distance of 1.2 cm. What is the electric field strength? Express your answer with the appropriate units. HA E = Value Units Submit Request Answerarrow_forwardPART Barrow_forwardTwo 1.5 kg masses are 1.0 m apart (center to center) on a frictionless table. Each has + 9.6 μC of charge. For general problem-solving tips and strategies for this topic, you may want to view a Video Tutor Solution of Levitation. Part A What is the magnitude of the electric force on one of the masses? Express your answer with the appropriate units. F= Submit Part B Fit for Paredo for Part redo foart A reor Part A keyboard shortcuts for Part A help for Part A Value Request Answer Submit What is the initial acceleration of the mass if it is released and allowed to move? Express your answer with the appropriate units. for Rart for Part.Edo for Part redo folert 8 reor Part B keyboard shortcuts for Part 8 help for Part B Units Value Request Answer Unitsarrow_forward
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