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A chemical bond with unequal electrons?

A chemical bond with unequal electrons is polar covalent bond. In this type of bond, electrons are shared unevenly between atoms, resulting in a partial positive and partial negative charge on the atoms involved. The electronegativity difference between the atoms causes this unequal sharing of electrons.


Unequal sharing of electrons produces what type of bond?

polar covalent bonds


Can NF3 experience dipole dipole attractions?

Yes, NF3 can experience dipole-dipole attractions because it is a polar molecule. The molecule has a net dipole moment due to the unequal sharing of electrons between nitrogen and fluorine atoms, leading to partial positive and negative charges that can interact with each other through dipole-dipole forces.


Why NF3 is an exothermic compound whereas NCl3 is not?

NF3 (nitrogen trifluoride) is an exothermic compound because the formation of its bonds releases more energy than is required to break the existing bonds in the reactants. In contrast, NCl3 (nitrogen trichloride) does not release sufficient energy during bond formation to overcome the energy needed for bond breaking, making it less stable and endothermic overall. The stronger N-F bonds in NF3 compared to the weaker N-Cl bonds in NCl3 contribute to this difference in thermodynamic behavior.


What is a unequal sharing of two pairs of electrons known as?

A Coordinate Covalent Bond is when one atom donates both of the electrons that will be shared between two atoms to form a bond. When two pairs of electrons are involved, it is never unequal.

Related Questions

What is the bond angle in NF3?

The bond angle in NF3 is approximately 107 degrees.


How do the bond angles in NF3 compare to those in NH3?

In NF3, the bond angles are larger than in NH3.


What type of bond is NF3?

NF3 is a covalent bond. It is formed by the sharing of electrons between nitrogen and fluorine atoms within the molecule.


Why do TeO2 bonds have unequal bond lengths unlike SO2?

TeO2 has unequal bond lengths because the central Te atom has a larger size than the surrounding O atoms, resulting in longer Te-O bonds than O-O bonds. In contrast, in SO2, the S atom is smaller than the O atoms, leading to more equal bond lengths. The size difference between the central atom and the surrounding atoms influences bond lengths in molecules.


Is NF3 a covalent or ionic bond?

NF3 forms a covalent bond. In NF3, nitrogen and fluorine share electrons to form a stable molecule. Ionic bonds typically form between a metal and a nonmetal, where one atom donates electrons to the other.


What kind of bond does nitrogen and fluorine have?

Nitrogen and fluorine form a covalent bond, specifically a single covalent bond in the case of nitrogen tetrafluoride (NF3) or a triple covalent bond in the case of nitrogen trifluoride (NF3). This means they share electrons to achieve a stable electron configuration.


What is a quadrilateral with four right angles but with sides of unequal lengths?

a rectangle (that is NOT a square) has 4 right angles and consecutive sides of unequal lengths.


Why ammonia has larger bond angle than nf3?

in ammonia as N has mre e.n. than H,bond pair of electrons are more towards it which causes repulsion with lone pair of electrons,and they tend o move away but in nf3 bond pair of electrons are away from flourine so they can have lesser bond angle


Is NF3 covalent or ionic?

NF3 is a covalent compound. Nitrogen trifluoride (NF3) is formed between nitrogen and fluorine, both nonmetals, and they share electrons in a covalent bond.


What is the idealized bond angle of NF3?

The idealized bond angle of NF3 is 107 degrees. This is due to the lone pair of electrons on the nitrogen atom which repels the bonded electron pairs, resulting in a slight compression of the bond angles from the ideal 109.5 degrees of a tetrahedral geometry.


Noncongruent polygons can have unequal side lengths?

true


Is NF3 a trigonal pyramidal?

The shape of NF3 is trigonal pyramidal because Flourine bonds to nitrogen three times leaving nitrogen with a left over bond pair of electrons.