BIO Electric Field of Axons. A nerve signal is transmitted through a neuron when an excess of Na + ions suddenly enters the axon, a long cylindrical part of the neuron. Axons are approximately 10.0 μ m in diameter, and measurements show that about 5.6 × 10 11 Na + ions per meter (each of charge + e ) enter during this process. Although the axon is a long cylinder, the charge does not all enter everywhere at the same time. A plausible model would be a series of point charges moving along the axon. Consider a 0.10-mm length of the axon and model it as a point charge. (a) If the charge that enters each meter of the axon gets distributed uniformly along it, how many coulombs of charge enter a 0.10-mm length of the axon? (b) What electric field (magnitude and direction) does the sudden influx of charge produce at the surface of the body if the axon is 5.00 cm below the skin? (c) Certain sharks can respond to electric fields as weak as 1.0 μ N/C. How far from this segment of axon could a shark be and still detect its electric field?
BIO Electric Field of Axons. A nerve signal is transmitted through a neuron when an excess of Na + ions suddenly enters the axon, a long cylindrical part of the neuron. Axons are approximately 10.0 μ m in diameter, and measurements show that about 5.6 × 10 11 Na + ions per meter (each of charge + e ) enter during this process. Although the axon is a long cylinder, the charge does not all enter everywhere at the same time. A plausible model would be a series of point charges moving along the axon. Consider a 0.10-mm length of the axon and model it as a point charge. (a) If the charge that enters each meter of the axon gets distributed uniformly along it, how many coulombs of charge enter a 0.10-mm length of the axon? (b) What electric field (magnitude and direction) does the sudden influx of charge produce at the surface of the body if the axon is 5.00 cm below the skin? (c) Certain sharks can respond to electric fields as weak as 1.0 μ N/C. How far from this segment of axon could a shark be and still detect its electric field?
BIO Electric Field of Axons. A nerve signal is transmitted through a neuron when an excess of Na+ ions suddenly enters the axon, a long cylindrical part of the neuron. Axons are approximately 10.0 μm in diameter, and measurements show that about 5.6 × 1011 Na+ ions per meter (each of charge +e) enter during this process. Although the axon is a long cylinder, the charge does not all enter everywhere at the same time. A plausible model would be a series of point charges moving along the axon. Consider a 0.10-mm length of the axon and model it as a point charge. (a) If the charge that enters each meter of the axon gets distributed uniformly along it, how many coulombs of charge enter a 0.10-mm length of the axon? (b) What electric field (magnitude and direction) does the sudden influx of charge produce at the surface of the body if the axon is 5.00 cm below the skin? (c) Certain sharks can respond to electric fields as weak as 1.0 μN/C. How far from this segment of axon could a shark be and still detect its electric field?
A nerve signal is transmittedthrough a neuron when an excess of Na+ ions suddenly enters the axon,a long cylindrical part of the neuron. Axons are approximately 10.0 mmin diameter, and measurements show that about 5.6 * 1011 Na+ ions permeter (each of charge +e) enter during this process. Although the axonis a long cylinder, the charge does not all enter everywhere at the sametime. A plausible model would be a series of point charges moving alongthe axon. Consider a 0.10 mm length of the axon and model it as a pointcharge. (a) If the charge that enters each meter of the axon gets distributeduniformly along it, how many coulombs of charge enter a 0.10 mmlength of the axon? (b) What electric field (magnitude and direction)does the sudden influx of charge produce at the surface of the body ifthe axon is 5.00 cm below the skin? (c) Certain sharks can respond toelectric fields as weak as 1.0 mN/C. How far from this segment of axoncould a shark be and still detect its electric field?
Nerve cells transmitelectric signals through their long tubular axons. These signals propagatedue to a sudden rush of Na+ ions, each with charge +e, into theaxon. Measurements have revealed that typically about 5.6 * 10^11 Na+ions enter each meter of the axon during a time of 10 ms. What is thecurrent during this inflow of charge in a meter of axon?
In (Figure 1), C1= 2.50 μF and Vab= 110 V. The charge on capacitor C1 is 180 μC.
(A) Calculate the voltage across C2. Express your answer to three significant figures and include the appropriate units.
(B) Calculate the voltage across C3. Express your answer to three significant figures and include the appropriate units.
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