Remember also that … Things don't fall through other things because they are levitating on an electrostatic field! Step 1. Physics. The nucleus of one atom repels the nucleus of another atom when it gets close. ... one after another. Atoms: Atoms are the building blocks of matter and are composed of neutrons, protons and electrons. If atoms are mostly empty space, why do objects look and feel solid? Since atoms are mostly empty space, why don't objects pass through one another? A. When we say atoms are mostly empty space we mean there is a big difference between the size of the sub-atomic particles and the distance between them. Ask for details ; Follow Report by Nadyah5432 02/16/2018 Log in to add a comment Answer. The electrons on the atoms repel other electrons on other atoms when they get close. Since atoms are mostly empty space, why don't we fall through a floor when we stand on? If atoms are 99.999999999999% empty space then why don't things pass right through them? The idea that atoms are mostly "empty space" is, from a quantum viewpoint, nonsense. Things usually do not fall through other things due to levitation. Calculator; Subjects. Sign In. You see, every atom is surrounded by a shell of electrons. Since atoms are mostly empty space, why don't we fall through a floor when we stand on? Due to the changes in the patterns of absorbed and reflected light give our eyes reflections and colors, making the table look appear as a solid. Select text and press Ctrl+Enter. Menu. Ask Question. So why don’t our fingers just pass through atoms, and why doesn’t light get through the gaps? After some time, the electrons lose the gained energy, probably as light once more. check_circle Expert Answer. although atoms are mostly empty space, two solid objects cannot pass through each other because of the repulsion forces that the atoms of one object will have with the other. The electrons on the atoms repel other electrons on other atoms when they get close… So why don't our fingers just pass through atoms, and why doesn't light get through the gaps? Since atoms are mostly empty space, why don't objects pass through one another? 209 views. That’s why light doesn’t pass through the empty space of atoms. Since atoms are mostly empty space, why don't objects pass through one another? Since atoms are mostly empty space, why don't objects pass through one. When you sit on a chair, you are not really touching it. The electrons on the atoms repel other electrons on other atoms when they get close. I am not kidding! The electrons on the atoms repel other electrons on other atoms when they get close Which of the following statements best describes an element? There simply isn't enough space for your atoms to pass through the atoms of a solid object. Since atoms are mostly empty space, why don't objects pass through one another? If you touch the table, then the electrons from atoms in your fingers become close to the electrons in the table’s atoms. Since atoms are mostly empty space, why don't objects pass through one another? English; Mathematics; History; Chemistry; Physics; Biology ; Social Studies; Computers & Technology; Business; Arts; SAT; Advanced Placement (AP) Geography; Spanish; French; German; World Languages; Found a Mistake? The closer you bring two atoms, i.e. To explain why we must look at the electrons. Asked Dec 20, 2019. Since atoms are mostly empty space, why don't objects pass through one another? Disclaimer: I am not a physicist, I just like physics and tend to read a lot about it. Since atoms are mostly empty space, why don't objects pass through one another?'

Unfortunately, much of what we are taught at school is simplified – electrons do not orbit the centre of an atom like planets around the sun, like you may have been taught. Answered by Rythm14. In order to pass through each other, they must pass through each others electron cloud, and near each others atoms, since electron clouds repel each other and so do nuclei, this does not occur. Question. Step 1 . The electrons on the atoms repel other electrons on other atoms when they get close. the more the areas of non-zero expectation for their electrons overlap, the stronger will the repulsion due to the Pauli principle be, since it can never happen that two electrons possess exactly the same spin and the same probability to be found in an extent of space.

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