Material= IRON Resistivity= 10x10 b) Suppose that you have a cylinder that is made of your material with a length of I=20.0 cm and a crosssectional area of A=4.00x10-4 m2. Calculate the resistance, R, of the cylinder. c) A 9.0-V battery is connected to the cylinder that is made of your material in part-b. Using Ohm's law calculate the current passing through the material. wwm (V=l*RI=?) d) Suppose that the cylinder in part-b is cut into four equal pieces. Calculate the resistance of one piece of cylinder (which has a length of one fourth of the original length I) and compare your result with the original cylinder with lengthI.

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Chapter1: Units, Trigonometry. And Vectors
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Material= IRON
Resistivity= 10x10
b) Suppose that you have a cylinder that is made of
length of I=20.0 cm and a crosssectional area of A=4.00x10-4 m2. Calculate
your
material with a
the resistance, R, of the cylinder.
c) A 9.0-V battery is connected to the cylinder that is made of your material
in part-b. Using Ohm's law calculate the current passing through the material.
(V=l*RI=?)
d) Suppose that the cylinder in part-b is cut into four equal pieces. Calculate
the resistance of one piece of cylinder (which has a length of one fourth of
the original length I) and compare your result with the original cylinder with
length I.
Transcribed Image Text:-8 Material= IRON Resistivity= 10x10 b) Suppose that you have a cylinder that is made of length of I=20.0 cm and a crosssectional area of A=4.00x10-4 m2. Calculate your material with a the resistance, R, of the cylinder. c) A 9.0-V battery is connected to the cylinder that is made of your material in part-b. Using Ohm's law calculate the current passing through the material. (V=l*RI=?) d) Suppose that the cylinder in part-b is cut into four equal pieces. Calculate the resistance of one piece of cylinder (which has a length of one fourth of the original length I) and compare your result with the original cylinder with length I.
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