Valence electrons periodic table trend4/16/2024 ![]() According to this scale, fluorine is the most electronegative element, while cesium is the least electronegative element. The scale has been named the Pauling scale in his honour. The most commonly used scale to measure electronegativity was designed by Linus Pauling. It is a dimensionless property because it is only a tendency. The tendency of an atom in a molecule to attract the shared pair of electrons towards itself is known as electronegativity. Main article: Electronegativity Periodic variation of Pauling electronegativities In that case, the ionization energy decreases as atomic size increases due to adding a valence shell, thereby diminishing the nucleus's attraction to electrons. However, suppose one moves down in a group. ![]() The decrease in the atomic size results in a more potent force of attraction between the electrons and the nucleus. Trend-wise, as one moves from left to right across a period in the modern periodic table, the ionization energy increases as the nuclear charge increases and the atomic size decreases. The energy needed to remove the second electron from the neutral atom is called the second ionization energy and so on. The first ionization energy is the amount of energy that is required to remove the first electron from a neutral atom. It is also referred to as ionization potential. The ionization energy is the minimum amount of energy that an electron in a gaseous atom or ion has to absorb to come out of the influence of the attracting force of the nucleus. ![]() These trends give a qualitative assessment of the properties of each element. These trends exist because of the similar electron configurations of the elements within their respective groups or periods they reflect the periodic nature of the elements. Major periodic trends include atomic radius, ionization energy, electron affinity, electronegativity, valency and metallic character. They were discovered by the Russian chemist Dmitri Mendeleev in 1863. In chemistry, periodic trends are specific patterns that are present in the periodic table that illustrate different aspects of certain elements when grouped by period and/or group. ![]() Specific recurring patterns that are present in the modern periodic table The periodic trends in properties of elements. ![]()
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