Respuesta :
Answer:
b. The electric field points away from the source charge, if the source charge is positive
d. The electric field points toward the source charge, if the source charge is negative.
Explanation:
A positive source charge would create an electric field that would exert a repulsive effect upon a positive test charge. Thus, the electric field vector would always be directed away from positively charged objects. On the other hand, a positive test charge would be attracted to a negative source charge. Therefore, electric field vectors are always directed towards negatively charged object.
Also electric field strength depends only on test charge
The correct options include b and d
The electric field points away from the source charge, if the source charge is positive.
Also, the electric field points toward the source charge, if the source charge is negative.
By definition of electric field, the correct options are:
- b. The electric field points away from the source charge, if the source charge is positive
- d. The electric field points toward the source charge, if the source charge is negative.
The electric field is a space sector that has been modified by the electric charge that, when introduced into it, generates a certain response or reaction.
The direction and direction of the electric field at a point are determined by the direction and direction of the electric charge.
Electric charges can be positive (+) or negative (-).
Positive charges move in the direction of the electric field and negative charges move in the opposite direction.
Then, the correct options are:
- b. The electric field points away from the source charge, if the source charge is positive
- d. The electric field points toward the source charge, if the source charge is negative.
Learn more about the electric field:
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