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The type of bond is determined by the difference in electronegativity of the atoms.
A number of factors. The polarity of the chemical bonds due to differences in electronegativity. The geometry of the moecule which may lead to these bond dipoles cancelling each other out. The contribution of a lone pair.
In chemistry, the partial charge of an atom can be determined by considering the electronegativity difference between atoms in a molecule. Electronegativity is a measure of an atom's ability to attract electrons in a chemical bond. The greater the difference in electronegativity between atoms, the greater the partial charge on each atom. This can be calculated using formulas or tables that provide electronegativity values for different elements.
The electronegativity value of sulfur (2.58) is higher than that of carbon (2.55). Therefore, sulfur is slightly more electronegative than carbon. Carbon and sulfur can form a polar covalent bond due to their small electronegativity difference, resulting in a bond with partial charges. This is determined by comparing their electronegativity values on the Pauling scale.
Electronegativity is not typically a factor in determining the activity series of metals. The activity series is based on the reactivity of metals with acids and is typically determined by the tendency of a metal to lose electrons. Electronegativity, on the other hand, is a measure of the tendency of an atom to attract electrons in a compound.
The electronegativity of SCl2 is determined by the individual electronegativities of the atoms involved, which are sulfur (S) and chlorine (Cl). Sulfur has an electronegativity of 2.58, while chlorine has an electronegativity of 3.16. Therefore, the electronegativity of SCl2 is closer to that of chlorine.
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The type of bond is determined by the difference in electronegativity of the atoms.
The Egyptians used geometry to determine their boundaries. truefalsecannot be determined
A number of factors. The polarity of the chemical bonds due to differences in electronegativity. The geometry of the moecule which may lead to these bond dipoles cancelling each other out. The contribution of a lone pair.
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Delimiting is a process in which the boundaries of a problem is determined.
No, the color of an element does not determine its electronegativity. Electronegativity is a measure of an atom's ability to attract and hold onto electrons in a chemical bond, which is determined by the atom's size, nuclear charge, and electron configuration. Color is a property of an element when it is in a specific form or compound and is not directly related to electronegativity.
The electronegativity of sucrose is not determined by the sucrose molecule itself, but rather by the individual atoms that make up sucrose. Sucrose is composed of carbon, hydrogen, and oxygen atoms, each with their own electronegativity values. The overall electronegativity of sucrose is a weighted average of the electronegativities of these individual atoms.
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