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One cannot accurately predict where in the electron cloud an electron can be found because of the Heisenberg Uncertainty Principle. This states that the position and the velocity of an object cannot both be measured exactly, at the same time, and since we can determine the velocity of the electron, knowing the location with certainty is not possible. The main reason behind this is that as soon as you "look" at the electron, using whatever method available, you will by the very nature of looking at it, alter its position.

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8y ago
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6mo ago

We cannot accurately predict where in the electron cloud electrons can be found because of the Heisenberg uncertainty principle. This principle states that it is impossible to simultaneously know the exact position and momentum of an electron. As a result, we can only describe the probability distribution or the likelihood of finding an electron in a particular region of the electron cloud.

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Q: Why can we not accurately predict where in the electron cloud electrons can be found?
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Related questions

What is the region of electrons?

The electrons of an atom are located in the electron cloud.


What particles are located in the electron cloud?

Electrons are the particles found in electron clouds.


What is the charge on the cloud or shell of the atom?

The charge of an electron cloud is negative. The electron cloud is made up of electrons, and the electrons are negatively charged. The electron cloud will have a negative charge as well.


Are electrons located in energy levels or electron cloud?

Electrons are located in energy levels within the electron cloud.


What charge does the electron cloud of every atom have?

In a neutral atom, the charge on the electron cloud is balanced by the carge on the atom's nucleus. The nucleus has a positive charge proportional to the number of protons in it. This attracts and holds the negatively charged electrons in the electron cloud. And in a neutral atom (not an ion), there will be as many electrons in the electron cloud as protons in the nucleus. The charges will balance.


How can you use electron cloud in a sentence?

"The electron cloud is the space in the atom where the electrons orbit the nucleus."


What is a region around the nucleus in which electrons move about?

Electrons surround the nucleus of an atom in patterns called electron shells.


What is the region around the nucleus where electrons are found?

The electron cloud. An electron cloud is a volume or region in the atom where it is likely to find or detect an electron. It is actually really hard to detect an electron because an atom is mostly empty space, electrons are orbiting the nucleus at almost the speed of light so they orbit really fast, the electrons are very tiny and may be point like since we don't really know the volume or size of the electron, and an atom in reality is 3 dimensional which the electron cloud and orbitals is 3 dimensional. Since electrons are so hard to detect then they would call this volume or region of the atom an electron cloud because the electron cloud is a volume or region where they know that electrons are likely to be there even if they are hard to find. Or maybe the electron cloud is where they can also know the different sub- orbitals or subshells of the electrons.


What is the negatively charged particle that is one of the three building blocks of atoms?

That's the electron, located outside the nucleus. Electrons swirl about in a cloud around the nucleus, this cloud is somewhat organized into shells but is impossible to predict the place of one electron at anytime.


What are regions of space outside the nucleus where electrons travel?

Electron cloud or also called electron orbitals.


What part of the atom cannot have its location accurately determined and is modeled by a cloud around the center of the atom?

There are three atomic particles, the neutron, the proton and the electron. The proton and neutron are located in the nucleus, leaving the electron to orbit the nucleus in a probability cloud.


Where electrons located?

in the electron cloud of an atom.