The charge density on a disk of radius R = 11.8 cm is given by o = ar, with a = 1.36 µC/m³ and r measured radially outward from the origin (see figure below). What is the electric potential at point A, a distance of 36.0 cm above the disk? Hint: You will need to integrate the nonuniform charge density to find the electric potential. You will find a table of integrals helpful for performing the integration. V A
The charge density on a disk of radius R = 11.8 cm is given by o = ar, with a = 1.36 µC/m³ and r measured radially outward from the origin (see figure below). What is the electric potential at point A, a distance of 36.0 cm above the disk? Hint: You will need to integrate the nonuniform charge density to find the electric potential. You will find a table of integrals helpful for performing the integration. V A
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radially outward from the origin (see figure below). What is the electric potential at point A, a distance of 36.0 cm
above the disk? Hint: You will need to integrate the nonuniform charge density to find the electric potential. You will
find a table of integrals helpful for performing the integration.
V
A"
Transcribed Image Text:The charge density on a disk of radius R = 11.8 cm is given by o = ar, with a = 1.36 µC/m³ and r measured
radially outward from the origin (see figure below). What is the electric potential at point A, a distance of 36.0 cm
above the disk? Hint: You will need to integrate the nonuniform charge density to find the electric potential. You will
find a table of integrals helpful for performing the integration.
V
A
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