& Electric eel The South American eel can generate electric current that can stun and even kill nearby fish. The eel has 140 parallel rows of electric cells (0.15 V per cell). Each row has 5000 such cells for a total emf per row of 5000(0.15 V) = 750 V. Each row of cells also has about 1250 **#x03A9; of internal resistance. Because each row has the same emf and the rows are connected together on each side, the eel's circuit can be represented as shown in Figure P19.44 —a 750-V emf source in senes with 140, 1250- Ω parallel internal resistances all connected across an external resistance (the seawater from the front of the eel to its back) of about 800 Ω . Can the eel produce enough current to be dangerous to a person? Explain your answer. Identify all assumptions that you made.
& Electric eel The South American eel can generate electric current that can stun and even kill nearby fish. The eel has 140 parallel rows of electric cells (0.15 V per cell). Each row has 5000 such cells for a total emf per row of 5000(0.15 V) = 750 V. Each row of cells also has about 1250 **#x03A9; of internal resistance. Because each row has the same emf and the rows are connected together on each side, the eel's circuit can be represented as shown in Figure P19.44 —a 750-V emf source in senes with 140, 1250- Ω parallel internal resistances all connected across an external resistance (the seawater from the front of the eel to its back) of about 800 Ω . Can the eel produce enough current to be dangerous to a person? Explain your answer. Identify all assumptions that you made.
& Electric eel The South American eel can generate electric current that can stun and even kill nearby fish. The eel has 140 parallel rows of electric cells (0.15 V per cell). Each row has 5000 such cells for a total emf per row of 5000(0.15 V) = 750 V. Each row of cells also has about 1250
**#x03A9;
of internal resistance. Because each row has the same emf and the rows are connected together on each side, the eel's circuit can be represented as shown in Figure P19.44 —a 750-V emf source in senes with 140, 1250-
Ω
parallel internal resistances all connected across an external resistance (the seawater from the front of the eel to its back) of about 800
Ω
. Can the eel produce enough current to be dangerous to a person? Explain your answer. Identify all assumptions that you made.
A circular coil with 100 turns and a radius of 0.05 m is placed in a magnetic field that changes at auniform rate from 0.2 T to 0.8 T in 0.1 seconds. The plane of the coil is perpendicular to the field.• Calculate the induced electric field in the coil.• Calculate the current density in the coil given its conductivity σ.
An L-C circuit has an inductance of 0.410 H and a capacitance of 0.250 nF . During the current oscillations, the maximum current in the inductor is 1.80 A . What is the maximum energy Emax stored in the capacitor at any time during the current oscillations? How many times per second does the capacitor contain the amount of energy found in part A? Please show all steps.
A long, straight wire carries a current of 10 A along what we’ll define to the be x-axis. A square loopin the x-y plane with side length 0.1 m is placed near the wire such that its closest side is parallel tothe wire and 0.05 m away.• Calculate the magnetic flux through the loop using Ampere’s law.
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DC Series circuits explained - The basics working principle; Author: The Engineering Mindset;https://www.youtube.com/watch?v=VV6tZ3Aqfuc;License: Standard YouTube License, CC-BY