D B ww 8.50 Ω 11.5 V 15.0 V 6.22 www 15.1 Ω ww A 1 of 1 > Part E Calculate the potential at point D Express your answer using two significant figures. VD = 1.6 V Submit Previous Answers Answer Requested Provide Feedback
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- What is the potential difference ( in volts) across C2 when C1 = 5.0 µF, C2 = 15 µF, C3 = 30 µF, and Vo = 72.3 V? %3D C, HH H C, C3 Vo Select one: O A. 108.45 O B. 24.10 O C. 66.52 O D. 36.15 O E. 48.20What is the potential difference across C2 when C1 = 5.0 µF, C2 = 15 µF, C3= 30 µF, and VO = 24 V? the C2 C3 Vo Select one: O a. 24 V O b. 21 V O c. 19 V O d. 16 V O e. 8.0 VWhat is the potential difference ( in volts) across C2 when C1 = 5.0 µF, C2 = 15 µF, C3 = 30 µF, and Vo = 19.4 V? HHH C, C; Vo Select one: A. 29.10 B. 12.93 C. 17.85 D. 6.47 E. 9.70
- What is the potential difference ( in volts) across C2 when C = 5.0 µF, C2 = 15 µF, C3 = 30 µF, and Vo = 19.9 V? VoDetemine the potential difference, V-Vs. in the cirauit segment shown below when/= 28 mA and Q 50 µC. 15KQ of 15V 2uF ion, a. -385.00 V O b.385.00 V O410.00V 0d-410.0OV e. 430.00 VTo measure signal propagation in a nerve in the arm, the nerve is triggered near the armpit. The peak of the action potential is measured at the elbow and then, 4.0 ms later, 24 cm away from the elbow at the wrist.a. What is the speed of propagation along this nerve?b. A determination of the speed made by measuring the time between the application of a stimulus at the armpit and the peak of an action potential at the elbow or the wrist would be inaccurate. Explain the problem with this approach, and why the noted technique is preferable.
- In the figure E= 12.3 V. R₁ = 30000, R₂ = 21000, and R3 = 40600. What are the potential differences (in V) (a) VA-VB. (b) Ve-Vc. (c) Vc-Vo.and (d) VA-VC? R₂,CA C, AV C3 C2 C5 In the circuit above C1=3nF, C2=7nF, C3=9nF, C4=12NF, C5=161F, the battery emf = 17V. Find the energy stored on C3., when al capacitors are fully charged. State your answer in nJ (nanoJoules) to the nearest nJ. In addition to entering your final numerical answer into the box, solve this problem in detail on paper. Make sure that you write your solution neatly, starting with the clear diagram and all variables on it.DETAILS SERPSE10 27.3.OP.014.MI. What are the expected readings of the following in the figure below? (R = 6.30 Q, AV = 5.30 V) A 10.0 Ω www (c) ww 5.00 £2 ww R V V R www Need Help? Read It AV (a) ideal ammeter (Give your answer in mA.) mA + (b) ideal voltmeter (Give your answer in volts.) + 4.50 V What If? How would the readings in the ammeter (in mA) and voltmeter (in volts) change if the 4.50 V battery was flipped so that its positive terminal was to the right? ideal ammeter ideal voltmeter MA V 1 Master It
- Find the potential difference between point a and point b for the situation shown below. Here &₁ = 12.0 V, E₂ = 8.27 V and R₁ = 3.73, R₂ = 6.24 , and R3 = 1.88 Ω. Va-V b = R₂ as b V www R3 www R₁ &₁My courses / Introduction to Biophysics II. (BMC1PHYS02) / Topic 2 / BMC I, SCT6, Marc What is the power dissipated by R5 if R1 = 4.00 Q, R2 = 5.00 Q, R3=6.00 N, R4=8.00 Q and R5=4.00 Q and the voltage between points a and b (AVab = Vp-Va) is -6.50 V? R2 of R5 R3 R1 R4 3. Answer: Next pageSet the voltage to 10 Vand R to 1 MQ. 1. What will be the voltage across a 15 uF capacitor after 1 time constant? V=