Which of these statements about a dipole are correct? Select all that are true. 1: The electric field at any location in space, due to a dipole, is the vector sum of the electric field due to the positive charge and the electric field due to the negative charge. II: At a distance d from a dipole, where d > > s (the separation between the charges), the magnitude of the electric field due to the dipole is proportional to III: At a distance d from a dipole, where d> > s (the separation between the charges), the magnitude of the electric field due to the dipole is proportional to IV: A dipole consists of two particles whose charges are equal in magnitude but opposite in sign. V: The net electric field due to a dipole is zero, since the contribution of the negative charge cancels out the contribution of the positive charge. 1 11 III IV V
Which of these statements about a dipole are correct? Select all that are true. 1: The electric field at any location in space, due to a dipole, is the vector sum of the electric field due to the positive charge and the electric field due to the negative charge. II: At a distance d from a dipole, where d > > s (the separation between the charges), the magnitude of the electric field due to the dipole is proportional to III: At a distance d from a dipole, where d> > s (the separation between the charges), the magnitude of the electric field due to the dipole is proportional to IV: A dipole consists of two particles whose charges are equal in magnitude but opposite in sign. V: The net electric field due to a dipole is zero, since the contribution of the negative charge cancels out the contribution of the positive charge. 1 11 III IV V
Related questions
Question
give reason for each and dont use any AI tool for answering

Transcribed Image Text:Which of these statements about a dipole are correct? Select all that are true.
1: The electric field at any location in space, due to a dipole, is the vector sum of the electric field due to the
positive charge and the electric field due to the negative charge.
II: At a distance d from a dipole, where d >>s (the separation between the charges), the magnitude of the
electric field due to the dipole is proportional to
III: At a distance d from a dipole, where d >>s (the separation between the charges), the magnitude of the
electric field due to the dipole is proportional to
IV: A dipole consists of two particles whose charges are equal in magnitude but opposite in sign.
V: The net electric field due to a dipole is zero, since the contribution of the negative charge cancels out the
contribution of the positive charge.
■
1
11
IV
V
Expert Solution

This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
This is a popular solution!
Trending now
This is a popular solution!
Step by step
Solved in 3 steps with 3 images
