The paper bits would be neutral in charge. If the wooden plate has been rubbed against another material, it could acquire an opposite charge, potentially leading to the paper bits being attracted or repelled by the wooden plate.
A charged comb can attract bits of paper due to the transfer of charge. When the comb is charged, it creates an electric field that interacts with the charged particles in the paper, causing them to be attracted to the comb. This phenomenon is a demonstration of electrostatic force.
When the comb is charged, it creates an electric field around it. When the charged comb is brought close to the small bits of paper, it induces a charge in them by polarizing their electrons. Opposite charges attract, so the paper bits move towards the comb due to the attraction between the comb's charge and the induced charge in the paper bits.
The comb attracts the bits of paper when you rub it against your hair because your hair becomes charged with static electricity as the comb runs through it. The charged hair acts as a magnet, allowing the paper bits to stick to the comb. When the comb and paper bits are initially placed together without running through hair, there is no transfer of static charge to attract the paper.
put it in the water and it can be attracted to anything
Yes, rubbing a comb on the hair creates static electricity which can attract small bits of paper when they come close. The electric charge on the comb will cause the bits of paper to stick to it momentarily.
the bits of paper will stick on the wooden scale.
A charged comb can attract bits of paper due to the transfer of charge. When the comb is charged, it creates an electric field that interacts with the charged particles in the paper, causing them to be attracted to the comb. This phenomenon is a demonstration of electrostatic force.
When the comb is charged, it creates an electric field around it. When the charged comb is brought close to the small bits of paper, it induces a charge in them by polarizing their electrons. Opposite charges attract, so the paper bits move towards the comb due to the attraction between the comb's charge and the induced charge in the paper bits.
The comb attracts the bits of paper when you rub it against your hair because your hair becomes charged with static electricity as the comb runs through it. The charged hair acts as a magnet, allowing the paper bits to stick to the comb. When the comb and paper bits are initially placed together without running through hair, there is no transfer of static charge to attract the paper.
put it in the water and it can be attracted to anything
Yes, rubbing a comb on the hair creates static electricity which can attract small bits of paper when they come close. The electric charge on the comb will cause the bits of paper to stick to it momentarily.
No, a steel spoon rubbed with a woolen cloth will not attract bits of paper. This is because the steel spoon is not charged with static electricity through the rubbing process. The woolen cloth, however, can become charged with static electricity due to the friction between the wool fibers. This static charge is not transferred to the steel spoon in a way that would attract bits of paper.
When a glass rod is rubbed, it acquires a positive static charge. The small bits of paper become negatively charged by induction when the positively charged glass rod is brought nearby. Opposite charges attract, causing the paper bits to be attracted to the rod.
A hard rubber comb can generate static electricity when it is rubbed against hair or certain materials. This static charge can attract lightweight objects like bits of paper due to the phenomenon of electrostatic attraction between charged objects of opposite charge.
the paper was a possitive chargeI think the answer sought was Physical Change. {and spelling got in the way.)
The balloon becomes statically charged when rubbed against hair or clothing, attracting the neutral paper bits. This is due to the static charge on the balloon causing an electrostatic force between the balloon and the paper, causing the paper bits to stick to the balloon.
The bits of paper were attracted to the charged balloon because of the static electricity. This attraction caused the bits of paper to move towards the balloon.