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  2. Dec 15, 2018 · Under extraordinary conditions, protons do stick to electrons. The high pressure within a neutron star forces electrons and protons to react to form neutrons. Free neutrons don’t last very long.

    • Kinetic and Potential Energy in Atomic Stability.
    • The Final Deck in The Game: The Battle of The Infinities
    • Dual Nature of Electrons
    • Let’s Sum It Up

    An electron in atomic space farther away from the nucleus carries potential energy, but no kinetic energy. If the electron moves towards the proton, part of its potential energy is converted to kinetic energy and electromagnetic energy. Electrons with kinetic energy keep hopping, which prevents them from combining with a proton.

    If the electron did enter the nucleus, it still wouldn’t combine with the proton. The potential energy of an electron becomes negative as it approaches the nucleus andisminus infinity inside the nucleus. In contrast, the kinetic energy of electrons keeps increasing and it is positive infinity inside the nucleus, which is called the confinement ener...

    As per the Heisenberg principle, the location and the momentum of an electron cannot be determined simultaneously. This is a fundamental property of microbodies, such as electrons. So, within the perimeter of an atom, an electron cannot be considered as a particle, but more as a wave. Thus, the electron can pass through the nucleus, but it cannot f...

    A proton–electron union must form a neutron. Both the charge and the mass have to match. Charge-wise, the positively charged proton will interact with the negatively charged electron to form a neutron, but the match of mass is improbable. The mass of a proton is 1.6726 x 10-27 kg, and the mass of an electron is 0.00091 x 10-27 kg, but the mass of a...

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  3. Nov 1, 2009 · You can cause - if at very high pressures - electrons essentially to react with protons and turn into neutrons, and this is what happens in neutron stars. A neutron actually isn't stable just lying around in the atmosphere, or in a vacuum.

  4. Feb 24, 2019 · It states that electrons and protons are bonded together by emitting electromagnetic waves and absorbing each other's em wave.

  5. Feb 22, 2016 · Not only are electrons attracted to protons, electrons radiate away energy when accelerated. A classical electron in orbit around a proton should spiral into the nucleus in a small fraction of a second.

  6. Key fact: Protons are positively charged. Electrons are negatively charged. Objects that are charged can affect other charged objects using the non-contact forces of static electricity.

  7. Jul 30, 2024 · Atoms are made of extremely tiny particles called protons, neutrons, and electrons. Protons and neutrons are in the center of the atom, making up the nucleus. Electrons surround the nucleus. Protons have a positive charge. Electrons have a negative charge.

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