No of course not. That's not the point of the summary. The point is an understanding of how electricity interacts with the body.
I'm not saying women are not strong or don't have high pain tolerance. I'm just saying the reason you such a difference in experience between men and women is not pain tolerance but biological difference.
More muscle mass can indeed lead to more pain during electrocution. This is primarily because muscle tissue has lower electrical resistance than fat due to its higher water and electrolyte content, making the overall body resistance lower in individuals with higher muscle mass (and typically lower body fat). According to Ohm's law (I = V/R), for a given voltage (e.g., touching the same live wire), lower resistance results in higher current flowing through the body. Higher current intensifies the effects of the shock, including more severe nerve stimulation, stronger muscle contractions, and spasms, which are key sources of pain. Pain from electrocution arises from: Direct stimulation of sensory nerves by the current, causing burning or tingling sensations.
Violent muscle contractions (tetany) that can feel painful and may lead to secondary injuries like strains, dislocations, or fractures.
Supporting factors: Tissues like muscle and nerves conduct electricity well (low resistance), allowing current to flow more easily and potentially increasing current density in conductive paths.
Individuals with higher body fat experience less severe shocks because fat's higher resistance reduces current flow.
While larger muscle mass may slightly raise the current threshold for effects like loss of muscle control (e.g., let-go current is higher in people with more muscle, such as men vs. women or adults vs. children), this does not fully offset the increased current from lower resistance in typical scenarios.
More muscle mass can indeed lead to more pain during electrocution. This is primarily because muscle tissue has lower electrical resistance than fat due to its higher water and electrolyte content, making the overall body resistance lower in individuals with higher muscle mass (and typically lower body fat). According to Ohm's law (I = V/R), for a given voltage (e.g., touching the same live wire), lower resistance results in higher current flowing through the body. Higher current intensifies the effects of the shock, including more severe nerve stimulation, stronger muscle contractions, and spasms, which are key sources of pain. Pain from electrocution arises from: Direct stimulation of sensory nerves by the current, causing burning or tingling sensations.
Violent muscle contractions (tetany) that can feel painful and may lead to secondary injuries like strains, dislocations, or fractures.
Supporting factors: Tissues like muscle and nerves conduct electricity well (low resistance), allowing current to flow more easily and potentially increasing current density in conductive paths.
Individuals with higher body fat experience less severe shocks because fat's higher resistance reduces current flow.
While larger muscle mass may slightly raise the current threshold for effects like loss of muscle control (e.g., let-go current is higher in people with more muscle, such as men vs. women or adults vs. children), this does not fully offset the increased current from lower resistance in typical scenarios.
More muscle mass can indeed lead to more pain during electrocution. This is primarily because muscle tissue has lower electrical resistance than fat due to its higher water and electrolyte content, making the overall body resistance lower in individuals with higher muscle mass (and typically lower body fat). According to Ohm's law (I = V/R), for a given voltage (e.g., touching the same live wire), lower resistance results in higher current flowing through the body. Higher current intensifies the effects of the shock, including more severe nerve stimulation, stronger muscle contractions, and spasms, which are key sources of pain.Pain from electrocution arises from:Direct stimulation of sensory nerves by the current, causing burning or tingling sensations.
Violent muscle contractions (tetany) that can feel painful and may lead to secondary injuries like strains, dislocations, or fractures.
Supporting factors:Tissues like muscle and nerves conduct electricity well (low resistance), allowing current to flow more easily and potentially increasing current density in conductive paths.
Individuals with higher body fat experience less severe shocks because fat's higher resistance reduces current flow.
While larger muscle mass may slightly raise the current threshold for effects like loss of muscle control (e.g., let-go current is higher in people with more muscle, such as men vs. women or adults vs. children), this does not fully offset the increased current from lower resistance in typical scenarios.
@5SolasMissy Actually it was Paul who said that. You are using Paul's words as an authority. He said many things throughout his time as an apostle, and not everything was captured in a letter that made it into the bible.
Some of those words are the tradition he speaks about in the following verse:
"Therefore, brethren, stand fast and hold to the traditions which ye have been taught, whether by word or our epistle." 2 Thessalonians 2:15
If you can understand this, then you are closer to understanding where you misunderstand scripture, and how that leads you away from the very real Church Christ established here on earth.