Determine the amount of charge passing during galvanization

The task is given: to determine the amount of charge passing through a section of human tissue within 2 minutes during galvanization, if the flux density is 0.1 mA/cm^2 and the dimensions of the electrodes are 4*6 cm.

To solve this problem we use the formula:

Q = ItS,

where Q is the amount of charge, I is the current strength, t is time, S is the cross-sectional area of ​​the conductor.

Substituting the values ​​into the formula, we get:

Q = 0.1 * 2 * 4 * 6 = 4.8 µC.

Thus, the amount of charge passing through a section of human tissue within 2 minutes during galvanization is 4.8 microcoulombs.

The problem was solved using the formula Q = ItS, where Q is the amount of charge, I is the current, t is time, S is the cross-sectional area of ​​the conductor.

The online store of digital goods presents a unique product - a solution to the problem of determining the amount of charge passing through a section of human tissue during galvanization. Our product is presented in a beautifully designed HTML format, which allows you to conveniently and quickly read the problem statement, as well as get acquainted with the detailed solution.

To solve the problem, use the formula Q = ItS, where Q is the amount of charge, I is the current, t is time, S is the cross-sectional area of ​​the conductor. Our product provides a detailed description of the problem conditions, formulas and laws used in the solution, as well as the derivation of the calculation formula and answer. If you have any questions about the solution, our specialists are always ready to help.

By purchasing our product, you receive a unique solution to the problem with a beautiful and convenient design that will allow you to quickly and easily understand this topic.

This product is a solution to the problem of determining the amount of charge passing through a section of human tissue during galvanization within 2 minutes. With a flux density of 0.1 mA/cm^2 and an electrode size of 4*6 cm, the formula Q = ItS is used, where Q is the amount of charge, I is the current strength, t is time, S is the cross-sectional area of ​​the conductor. The solution to the problem is presented in a beautifully designed HTML format, which allows you to conveniently familiarize yourself with the problem conditions and a detailed solution, including the output of the calculation formula and answer. When purchasing this product, you receive a unique solution to the problem with a brief record of the conditions, formulas and laws used in the solution. If you have any questions about the solution, our specialists are always ready to help.


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The task is given to determine the amount of charge passing through a section of human tissue during galvanization for 2 minutes, if the flux density is 0.1 mA/cm^2 and the size of the electrodes is 4*6 cm.

To solve the problem, it is necessary to use Ohm's law, which states that the current flowing through a conductor is proportional to the voltage and inversely proportional to the resistance of the conductor. In this case, the resistance of human tissue can be considered constant.

Thus, to determine the magnitude of the charge, it is necessary to know the strength of the current flowing through a section of human tissue. The current strength can be determined by the formula I = S * j, where I is the current strength, S is the area of ​​the electrodes, j is the current density.

To find the charge, you need to multiply the current by time, i.e. Q = I * t.

Thus, the calculation formula for finding the charge will look like this: Q = S * j * t.

Substituting the known values, we get Q = 4 * 6 * 0.1 * 2 * 60 = 288 C.

Answer: the amount of charge passing through a section of human tissue during galvanization for 2 minutes is 288 C.


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