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∙ 7y agoWhen a charged rod is brought near an electroscope with the opposite charge, the positive and negative charges in the electroscope are attracted to the rod. This causes the leaves to come closer together as the negative charges in the leaves are attracted to the positively charged rod. This movement indicates that the electroscope has detected a charge.
When we touch a charged electroscope with our fingers, the excess charge on the electroscope is neutralized by our body, causing the electroscope to discharge and lose its charge. As a result, the leaves of the electroscope will collapse back together.
The leaves of a gold leaf electroscope attract each other when the electroscope is charged with the same type of charge (positive or negative) on both the leaves. This causes them to repel from the stem and move closer towards each other.
When two charged objects come closer together, they can either attract or repel each other depending on the types of charges they possess. Objects with opposite charges (positive and negative) will attract each other, while objects with the same charge (positive and positive, or negative and negative) will repel each other due to the electric force between them.
If you rub two balloons with nylon and bring them closer together, they will repel each other due to static electricity. The rubbing creates a build-up of negative charge on both balloons, causing them to have the same charge and push away from each other.
Compression pulls materials together by applying force in opposite directions, reducing the volume of the material. This force causes the particles of the material to come closer together, resulting in a decrease in volume.
When we touch a charged electroscope with our fingers, the excess charge on the electroscope is neutralized by our body, causing the electroscope to discharge and lose its charge. As a result, the leaves of the electroscope will collapse back together.
The leaves of a gold leaf electroscope attract each other when the electroscope is charged with the same type of charge (positive or negative) on both the leaves. This causes them to repel from the stem and move closer towards each other.
When two charged objects come closer together, they can either attract or repel each other depending on the types of charges they possess. Objects with opposite charges (positive and negative) will attract each other, while objects with the same charge (positive and positive, or negative and negative) will repel each other due to the electric force between them.
The opposite of divergence is convergence, which refers to moving towards a common point or coming together. In terms of vectors or functions, convergence indicates that they are getting closer together or approaching a specific value over time or space.
If they are farther apart, there is less gravitational pull. Opposite if they are closer together.
If you rub two balloons with nylon and bring them closer together, they will repel each other due to static electricity. The rubbing creates a build-up of negative charge on both balloons, causing them to have the same charge and push away from each other.
When two opposite magnetic poles are brought closer together, they attract each other and this force increases as the distance between them decreases. The magnetic field lines between the poles become more concentrated and stronger, resulting in a stronger attractive force. If the poles are brought close enough together, they will eventually snap together due to the strong attraction.
They come closer together, then farther apart, and then closer, with a period of 26 months. The "closest" that Mars ever comes to Earth is about 38 million miles, and the farthest apart is about 240 million miles when we are on opposite sides of the Sun.
Compression pulls materials together by applying force in opposite directions, reducing the volume of the material. This force causes the particles of the material to come closer together, resulting in a decrease in volume.
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Contour lines that are closer together indicate a steeper slope. The closer the lines are together, the greater the slope of the terrain.
Ionic bonds are stronger when the ions are closer together. This is because the attraction between the positive and negative ions increases as they get closer, leading to a stronger bond. Conversely, when the ions are farther apart, the attraction decreases, weakening the bond.