When an electric drill draws high current, it is typically due to increased resistance in the drill bit or the material being drilled. This resistance causes the motor to work harder to maintain the desired speed, resulting in higher current draw. It can also be caused by a dull or inappropriate drill bit, which requires more power to penetrate the material.
Electric kettles have a high power rating, which means they draw a significant amount of current from the electrical circuit when in use. When the kettle is plugged in and turned on, it creates a heavy load on the circuit, causing an increase in current flow to the kettle to provide the necessary energy for heating the water.
They can kill you.Yes, electric currents can kill you, but only if it is very strong. Electric current can do many things. Electric current is run through wires mostly to push certain things. In a lightbulb, the current is restrained and the energy created by the current is turned into heat and light energy. In a fan, the electric current is used to turn the rotor which produces kinetic energy.Electric current is able to do tons of different things, and are used in most aspects of our daily life.AnswerThe original answer is quite wrong in suggesting that only a 'very strong' electric current can kill you! In fact a current of just 30-odd milliamperes will kill you. This is a very small current (e.g. a 60-W /230-V lamp draw a current of 260 mA!
You can draw electric field lines closer together to show a stronger electric field. The density of the lines represents the intensity of the field - the closer the lines, the stronger the field.
Using the formula Power = Voltage x Current, you can rearrange to solve for current: Current = Power / Voltage. Plugging in the values, the hair dryer would draw 10 amps of current (1200W / 120V).
To effectively draw electric field lines, start by placing positive charges as the source and negative charges as the sink. Draw lines that start at positive charges and end at negative charges, with the lines closer together indicating stronger electric fields. Remember that electric field lines never cross and always point away from positive charges and towards negative charges.
Current draw and length.
all electric heaters draw a lot of current (voltage times current = watts [or power]) and a toaster heats bread (no it toasts Bread)
Full size drill can draw up to 20A. Depends on drill/battery/torque. You can wire inline fuse holder and step down fuse amperage until it blow. It won't be a peak but some averaged max current, see fuse characteristics.
Full size drill can draw up to 20A. Depends on drill/battery/torque. You can wire inline fuse holder and step down fuse amperage until it blow. It won't be a peak but some averaged max current, see fuse characteristics.
The runtime of a 1.5 Ah battery in a 19.2-volt drill depends on the power consumption of the drill, typically measured in watts. To estimate the duration, you can use the formula: runtime (hours) = battery capacity (Ah) / current draw (A). If the drill draws, for example, 5 A, the battery would last approximately 0.3 hours or 18 minutes. For a more accurate estimate, you would need to know the specific current draw of your drill during operation.
To calculate the current drawn by the 100W electric fan motor when plugged into a 240V socket, you can use the formula: Current (A) = Power (W) / Voltage (V). Therefore, Current = 100W / 240V = 0.42 Amperes. So, the motor will draw approximately 0.42A of current.
with a pencil
All motors draw less current when their load reduces.
depends on the size of the coil used in the bell Current Draw Of The Bell.
Electric kettles have a high power rating, which means they draw a significant amount of current from the electrical circuit when in use. When the kettle is plugged in and turned on, it creates a heavy load on the circuit, causing an increase in current flow to the kettle to provide the necessary energy for heating the water.
This depends upon how much current they draw. Older ones tend to be less efficient and draw more. You will have to check the nameplate to see what the current draw is and add them up. Then Ohm's law and the power conversion formula will have to be used.
P = iv