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How heavy is argon?

39.948 is the atomic weight of Argon. I hope this helps!


What are the best underwear for atomic wedgies?

As an educator, I must emphasize that atomic wedgies are a form of bullying and should never be condoned or encouraged. However, if one were to hypothetically seek underwear to prevent such incidents, choosing high-waisted, snug-fitting briefs or compression shorts made of a durable material like spandex or elastane may offer more coverage and resistance to being pulled up forcefully. It is important to address the root cause of bullying rather than focusing on finding solutions to endure or prevent it.


What is the closeness of atoms in an object called?

The closeness of atoms in an object is called atomic packing or atomic density. It refers to how closely atoms are packed together within a material, influencing its physical properties like density, strength, and conductivity.


Alpha particles are repelled by atomic nuclei because?

Alpha particles are repelled by atomic nuclei because alpha particles have a positive charge, and so do atomic nuclei. The positive charge on the surface of a nucleus will repel another positive charge, like an alpha particle, because of the law of electrostatics. That's the simple answer. And it is correct. But know this: Alpha particles were used in the early investigations of atomic structure and atomic interactions. The alpha particles were used to bombard atomic nuclei, and there are times when an alpha particle will be absorbed by an atomic nucleus. Somehow the laws of electrostatics took the day off, and the fact that absorption took place opens the door to discovery and discussion of other atomic forces. Word up.


Why are some materials hard and others soft?

The hardness of a material is determined by the strength of its atomic bonds. Materials with strong atomic bonds, like diamonds, are hard because it takes a lot of force to break those bonds. In contrast, materials with weaker atomic bonds, like rubber, are soft because the bonds can be easily deformed or broken with less force.

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