1x10^-3 kg or .001 kg
A typical large paper clip has a mass of around 1 gram. An item with a similar mass could be a standard A4 sheet of paper or a US dollar bill.
To calculate the energy of a paper clip using E=mc², you would need to know the mass of the paper clip in kilograms. Once you have the mass in kilograms, you can multiply it by the speed of light squared (3.00 x 10^8 m/s) to find the energy in joules.
The hypothesis could be: If the paper clip is placed in a container of water and a material with a lower density than water is introduced, then the paper clip will float on the surface of the water due to the buoyant force acting on it.
The exact capacity of a paper clip can vary depending on its size and thickness, but typically a paper clip can hold up to around 20-30 sheets of paper securely. However, trying to exceed this limit may cause the paper clip to bend or lose its grip.
The mass of a paper clip is simply measured in grams.
Yes, I think a paper clip has mass of about a gram.
A small metallic paper clip has a mass of a little over one gram.
a paper clip wheighs about 3 kilograms
A pencil has more mass than a paper clip no matter how big the pencil is.
yesa
Grams
Because of its mass.
A typical large paper clip has a mass of around 1 gram. An item with a similar mass could be a standard A4 sheet of paper or a US dollar bill.
You would determine its mass using a mass balance.
The magnet exerts a magnetic force on the paper clip in the downward direction. The force experienced by the paper clip will depend on the strength of the magnetic field, the mass of the paper clip, and the distance between the magnet and the paper clip. The force can be calculated using the formula for magnetic force, which involves the strength of the magnetic field, the charge of the particle, and the velocity of the particle.
2g is about the mass of a small paper clip.
Depends on the material is made from and how big it is.