Nerve cells and R - C circuits. The portion of a nerve cell that conducts signals is called an axon . Many of the electrical properties of axons are governed by ion channels, which are protein molecules that span the axon's cell membrane When open, each ion channel has a pore that is filled with fluid of low resistivity and connects the interior of the cell electrically to the medium outside the cell. In contrast, the lipid-rich cell membrane in which ion channels reside has very high resistivity. 88 Assume that a typical open ion channel spanning an axon’s membrane has a resistance of 1 × 10 11 Ω. We can model this ion channel, with its pore, as a 12-nm-tong cylinder of radius 0.3 nm What is the resistivity of the fluid in the pore’ A. 10 Ω · m B. 6 Ω · m C. 2 Ω · m D. 1 Ω · m
Nerve cells and R - C circuits. The portion of a nerve cell that conducts signals is called an axon . Many of the electrical properties of axons are governed by ion channels, which are protein molecules that span the axon's cell membrane When open, each ion channel has a pore that is filled with fluid of low resistivity and connects the interior of the cell electrically to the medium outside the cell. In contrast, the lipid-rich cell membrane in which ion channels reside has very high resistivity. 88 Assume that a typical open ion channel spanning an axon’s membrane has a resistance of 1 × 10 11 Ω. We can model this ion channel, with its pore, as a 12-nm-tong cylinder of radius 0.3 nm What is the resistivity of the fluid in the pore’ A. 10 Ω · m B. 6 Ω · m C. 2 Ω · m D. 1 Ω · m
Nerve cells and R - C circuits. The portion of a nerve cell that conducts signals is called an axon. Many of the electrical properties of axons are governed by ion channels, which are protein molecules that span the axon's cell membrane When open, each ion channel has a pore that is filled with fluid of low resistivity and connects the interior of the cell electrically to the medium outside the cell. In contrast, the lipid-rich cell membrane in which ion channels reside has very high resistivity.
88 Assume that a typical open ion channel spanning an axon’s membrane has a resistance of 1 × 1011 Ω. We can model this ion channel, with its pore, as a 12-nm-tong cylinder of radius 0.3 nm What is the resistivity of the fluid in the pore’
What are the expected readings of the ammeter and voltmeter for the circuit in the figure below? (R = 5.60 Ω, ΔV = 6.30 V)
ammeter
I =
simple diagram to illustrate the setup for each law- coulombs law and biot savart law
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.
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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