Part 0 - 2 Points) A berylium ion (q=-2 e ) is placed in a uniform electric field as shown below and released from rest.

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Part 0 - 2 Points) A berylium ion (q=-2 e ) is placed in a uniform electric field as shown below and released from rest.

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Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 1
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 1 (34.33 KiB) Viewed 62 times
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 2
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 2 (33.88 KiB) Viewed 62 times
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 3
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 3 (16.51 KiB) Viewed 62 times
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 4
Part 0 2 Points A Berylium Ion Q 2 E Is Placed In A Uniform Electric Field As Shown Below And Released From Rest 4 (27.56 KiB) Viewed 62 times
Part 0 - 2 Points) A berylium ion (q=-2 e ) is placed in a uniform electric field as shown below and released from rest. The ion È | | | | ion +++++ -d Please upload final answer to Canvas. Showing your work may get you partial credit. moves lett, towards lower electric potential moves right, towards higher electric potential. moves lett, towards higher electric potential moves right towards lower electric potential. Submit Request Answer

Part P. (2 Points) What is the current in the circuit below, where R1 = 8.8 12, R2 =25.622, R3 = 54.3 12 and V = 4.8 V? Ra w www R R₂ R Please upload final answer to Canvas. Showing your work may get you partial credit. 7.9x10-2 A O 1.0x102 A 9.9x10-3 A O 0.23 A

Part Q - (2 points) Capacitors C =4nF, C = 39.3 nF and Cs = 63.2 nF are combined in parallel. What is the equivalent capacitance of the three capacitors? Please upload final answer to Canvas. Showing your work may get you partial credit. 107 F O 0.291 F O 3.43 nF O 9.39x10-F Submit Request Answer

Part R - (2 points) In a simple RC circuit below, R; = 418 2. R2 = 19.5 2.Rs - 38,8 and C = 31.1 nF The circuit is connected to a V = 3.2 V battery. At steady state, - = С HE R w R, R₂ Please uplond final answer to Canvas, Showing your work may get you partiel credit The potential across the capacitor in 32 V and the potential across the resistor is o The potential across the capacitor is O and the potential across the resistorio o The potential across the capacitor is 3.2 V and the potential across the resistor is 32 V. The potential across the capacitor is O and the potential across the resistor is 32 V. Submit Besvest Answer
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