yes--consider two charged bodies (having positive charge). One body is very large in comparison to the other. The large body will induce opposite charge in the small body and thus both will attract each other
No, according to the principle of electrostatics, like charges repel each other. Therefore, a positively charged body will not attract another positively charged body; instead, they will repel each other.
Electrons will move from a negatively charged body to a positively charged body because opposite charges attract. The negatively charged electrons are naturally drawn towards the positively charged body in order to balance out the charge distribution and achieve equilibrium.
The charged object may induce a separation of charges in the neutral object.The charged object may induce a separation of charges in the neutral object.The charged object may induce a separation of charges in the neutral object.The charged object may induce a separation of charges in the neutral object.
A positively charge body is deficient in electrons (electrons are negatively charge, so a lack of them results in something being positively charged).
Yes, a charged body can attract a neutral conductor ball hanging on an insulating wire. When a charged body is brought close to the neutral conductor ball, it induces opposite charges within the ball through the process of electrostatic induction, causing it to be attracted towards the charged body.
No, according to the principle of electrostatics, like charges repel each other. Therefore, a positively charged body will not attract another positively charged body; instead, they will repel each other.
no
Electrons will move from a negatively charged body to a positively charged body because opposite charges attract. The negatively charged electrons are naturally drawn towards the positively charged body in order to balance out the charge distribution and achieve equilibrium.
A positively charge body is deficient in electrons (electrons are negatively charge, so a lack of them results in something being positively charged). It also probably means it has a healthy diet and a daily health routine
When a positively charged body touches a neutral body, the neutral body will become positively charged due to the transfer of some positive charge from the positively charged body.
A charged body with a net positive charge can attract a neutral body. When a positively charged object is brought near a neutral object, the positive charges in the neutral object will be attracted to the negative charges in the positively charged object, causing an attraction between the two objects.
The uncharged body will become positively charged after being brought into contact with a positively charged body, as electrons will flow from the uncharged body to the positively charged body until they reach equilibrium.
Remain in the positively charged body.
The charged object may induce a separation of charges in the neutral object.The charged object may induce a separation of charges in the neutral object.The charged object may induce a separation of charges in the neutral object.The charged object may induce a separation of charges in the neutral object.
Free electrons tend to move away from the negatively-charged body and toward the positively-charged body.They will transfer to the positively charged body in an attempt to create a neutral charge.Move from the negatively charged body to the positively charged body.move from the negatively charged body to the positively charged body!-----------I just finished the Penn Foster test, and the answers for a 100 are (from left to right):A D CA C BD B CC D DD C CA B DC A BD A C Byou actually had two of the answers mixed up but i fixed them--after i got them wrong on my test. so now its 100%
yes your body is both negatively charged and positively charged on the extracellular surface
To charge a body by induction, bring a charged object near but not in contact with the body. This will cause the charges in the body to redistribute, leaving one side positively charged and the other negatively charged. Remove the charged object, and the body will remain charged due to the separation of charges induced by the presence of the charged object.