Each inch of wire cost 3 cents and so 24/3 = 8 inches of wire
6.9
wire is first bent into the shape of a triangle. Each side of the triangle is 16 cm long. Then the wire is unbent and reshaped into a rectangle. If the length of the rectangle is 17 cm, what is its width?
6 in x 6 in x 6 in = 216 cubic inches
a cube has 12 edges...so the 96 inch wire would be cut into 12 pieces, each measuring 8 inches volume = 8x8x8 = 512 cubic inches Davehx
AWG is American Wire Gauge. Just as you would convert inches to any metric value you can follow the same process for wire gauge. Example: AWG 14 gauge wire is 0.0641 if you were to convert this to metric you would use 25.40 which is a conversion number for inches to mm. therefore 25.40 x 0.0641 = 1.628mm rounded would be 1.63mm
Elecrical wire is an great example of this. the copper wiring is the conductor of electrons and the plastic coating insulates the wire absorbing some heat from friction and it's impermeable to electrons not allowing them through outside the wire.
Rotation energy can be converted into electrical energy through the use of a generator. The rotating motion is used to spin a coil of wire within a magnetic field, which induces an electric current to flow in the wire. This current can then be captured and used as electrical energy.
To find the length of coiled wire in the slinky, calculate the circumference of each circle by using the formula 2πr. Then, multiply this by the number of circles (assuming they are all the same size) to get the total length of wire used. Finally, convert the total length to inches if needed.
Each inch of wire cost 3 cents and so 24/3 = 8 inches of wire
.0031 inches
0.0453 inches
AWG18 wire has a diameter of 0.0403 inches.
17 feet 10 inches
6 feet 10 inches
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A generator turns mechanical energy, such as from a turbine or engine, into electrical energy. It does this by electromagnetic induction, where moving a conductor (usually wire) through a magnetic field generates an electrical current in the wire.