The charge density on a disk of radius R = 12.6 cm is given by d = ar, with a = 1.34 µC/m³ and r measur potential at point A, a distance of 36.0 cm above the disk? Hint: You will need to integrate the nonuniform ch helpful for performing the integration. x Your response differs significantly from the correct answer. Rework your solution from the beginning and chec
The charge density on a disk of radius R = 12.6 cm is given by d = ar, with a = 1.34 µC/m³ and r measur potential at point A, a distance of 36.0 cm above the disk? Hint: You will need to integrate the nonuniform ch helpful for performing the integration. x Your response differs significantly from the correct answer. Rework your solution from the beginning and chec
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![The charge density on a disk of radius R = 12.6 cm is given by o = ar, with a = 1.34 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.
X
Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. V
R
A](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff9f892f9-1b84-4cdb-8cb6-60c32360b08c%2F7e0de120-96fc-485c-9f27-20aeb5a11adb%2Fkx2x67s_processed.png&w=3840&q=75)
Transcribed Image Text:The charge density on a disk of radius R = 12.6 cm is given by o = ar, with a = 1.34 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.
X
Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. V
R
A
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