Physics
Grade-8
Easy
Question
Which of the following diagrams, X and Y, show charging by conduction and charging by induction? (Assume stands are insulating.)
![](data:image/png;base64,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)
- X Induction
Y Conduction
- X Conduction
Y Induction
- X Induction
Y Induction
- X Conduction
Y Conduction
Hint:
X= conduction
The correct answer is: X Conduction
Y Induction
- Induction charging is a charging method that charges an object without actually touching the object to any other charged object.
- Charging by conduction refers to the technique of charging an uncharged material by bringing it into touch with some other charged material.
- Therefore, X= conduction Y= induction.
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Physics
Two electroscopes, one positively charged (X) and the other negatively charged (Y), are connected with a copper wire, as shown in the figure. Which of the following will happen?
![](data:image/png;base64,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)
Two electroscopes, one positively charged (X) and the other negatively charged (Y), are connected with a copper wire, as shown in the figure. Which of the following will happen?
![](data:image/png;base64,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)
PhysicsGrade-8
Physics
A positively charged body is brought near an uncharged electroscope, then:
A positively charged body is brought near an uncharged electroscope, then:
PhysicsGrade-8
Physics
A body gains some charge after charging by _______.
A body gains some charge after charging by _______.
PhysicsGrade-8
Physics
In charging by rubbing and conduction, there is a need for _____.
In charging by rubbing and conduction, there is a need for _____.
PhysicsGrade-8
Physics
__________ is a good conductor.
__________ is a good conductor.
PhysicsGrade-8
Physics
On charging by conduction, the mass of a body may:
On charging by conduction, the mass of a body may:
PhysicsGrade-8
Physics
In charging by induction the _________ and ________ of the body do not get affected.
In charging by induction the _________ and ________ of the body do not get affected.
PhysicsGrade-8
Physics
When an uncharged body is brought near to charged body in the conduction, there is ______ flow.
When an uncharged body is brought near to charged body in the conduction, there is ______ flow.
PhysicsGrade-8