1 Ohm represents nearly no resistance to current flow, at all. The word, Ohm is usually capitalized as it comes from a person's name.
The person who is subjected to a higher voltage
Michael Faraday
2000 lbs. Above answer was previously given, and is wrong. Not sure what that person was thinking. Current Designs, manfuacturer of the Kestrel 14, lists the boat's capacity as 350 pounds.
An earth wire only " works " under fault conditions in an electrical circuit . The earth or circuit protective conductor protects any conductive part of the system which under normal conditions should not be live , for example the metal casing of a washing machine . The earth , during a short circuit , will complete the circuit and the system will fuse/trip/disconnect if protected suitably .
1 Ohm represents nearly no resistance to current flow, at all. The word, Ohm is usually capitalized as it comes from a person's name.
fiorst it depends on the measure of current value, which can be defined as the amplitude or "quantity by meaurement , a burn to the body / skin can result . also the effect of elctric current travelling throuh yr body would likely cause your heart to fail and stop working . the current flow will look for the least pasth of resistance and it may result in throwing you backwards . the amount of current flowing thro a body of any sort will depend on 1 the supply voltage present , 2 the amount of resistance eveident .. the prescenec of water or moisture on surface/ hands for example will reduce the resistance t a lower than normal value and allow a current t start flowing . .. if a large value of voltage charge is present , then a high value of discharge voltage will be released from the supply to a body and cause extreme damage t a device or piece of equipment if it is not designed for that . or will cause a seveerre burn to the skin of a person on body where the cureent enters , and this will also have a extreme painfull, harmfull effect , putting you into hospital
Electricity has to pass through the filament which, when it gets hot enough from resistance to the current, begins to glow and give off light.
Electric shock occurs when high voltage passes through a person's body, typically when they provide a path for the electrical current to flow, such as through their hand or foot. The severity of the shock depends on factors such as the amount of current and the path it takes through the body.
its the immunity of the person
The amount of weight used in push-ups is based on a person's body weight, while in bench presses, external weights are added to increase resistance.
I suppose it has got to do with the amount of weight the person has and whether or not the weather conditions are the same I suppose it has got to do with the amount of weight the person has and whether or not the weather conditions are the same
WARNING: VERY simplified answer. An electric current will run through the most easiest path trying to get to the ground. If the easiest path is a person, the current will run through the person and cause varying amounts of harm. If the easiest path is a simple cable running straight into the ground, the current will run through the cable. Humans have a higher resistance than cables, so the easiest path is through the cable. Or perhaps another cable made of a material with even less resistance.
How long have you or did you live there.
Even small amounts of electrical current can be fatal to a person using the touch potential model, as it depends on the individual's body resistance and the duration of exposure to the current. Normally, currents as low as 10 milliamps can be dangerous and potentially fatal. It is important to always be cautious around electrical sources to prevent accidents.
As a person moves faster, the air resistance they experience increases. This is because the drag force on the person, caused by the air molecules colliding with their body, also increases with speed. This resistance can ultimately limit how fast a person can travel in a particular environment.
The person walking through gnats can be used as an analogy to explain the concept of resistance in physics. Just as the gnats cause resistance to the person's movement, in physics, resistance is the force that opposes the motion of an object through a medium, such as air or water.