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the nature of symmetry of a field due to a dipole is cylindrical in nature
Dipole-dipole interactions are of electrostatic nature.
The primary intermolecular force present in OBr2 (oxygen dibromide) is dipole-dipole interactions. This is due to the polar nature of the O-Br bond, as oxygen is more electronegative than bromine, creating a dipole moment. Additionally, London dispersion forces are also present, but they are generally weaker compared to the dipole-dipole interactions in this polar molecule.
In ClO3 (chlorate), the primary intermolecular forces are dipole-dipole interactions due to its polar nature, as the molecule has a net dipole moment. Additionally, London dispersion forces are present, which are weak forces that occur in all molecules, regardless of polarity. The strength of these forces varies depending on the size and shape of the molecules involved. Overall, dipole-dipole interactions are the dominant forces in ClO3.
When molecules have permanent dipole moments
yes
Dipole-dipole interactions are of electrostatic nature.
the nature of symmetry of a field due to a dipole is cylindrical in nature
Dipole-dipole interactions are of electrostatic nature.
Mythology was created to answer humans question about nature and their lives. It explained natural phenomena that they didn't have the science to explain.
The intermolecular forces in Cl2CO (phosgene) are primarily dipole-dipole interactions due to the polar nature of the molecule. Additionally, there may be weak dispersion forces between the molecules.
Brevity is more important essay should be too long but according to the nature of the essay
because the induced dipole-induced dipole forces are increased.
Yes, sulfur dioxide (SO2) is a polar molecule and has a dipole moment. This is because of the difference in electronegativity between the sulfur and oxygen atoms, causing an unequal distribution of electron density within the molecule.
The intermolecular forces in SeOF2 are primarily dipole-dipole interactions due to the polar nature of the Se-O and Se-F bonds. Additionally, there may be weak dispersion forces present between the molecules.
Van der Waals forces are usually considered to includedipole - dipole interactionsdipole- induced dipole interactionsinstantaneous dipole - induced dipole interactions (London dispersion forces)These are electrostatic in nature, and cause an attraction between molecules
Oxygen is a non polar molecule so its molecules have only Vander waal's forces of attraction.