yes it is becasue water is a polar molecule and therefore, can only disolve another polar molecule such as ch2o
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No, CH2O (formaldehyde) is a trigonal planar molecule with the carbon atom at the center of the triangle formed by the three atoms. It is not pyramidal in shape.
Dispersion forces, also known as London dispersion forces, are present in all molecules and atoms. These forces are the weakest type of intermolecular interaction and arise from temporary fluctuations in electron distribution within a molecule or atom.
Dipole-Dipole and covalent sigma bond forces.
The intermolecular force of CH2O (formaldehyde) is dipole-dipole interactions. This is because formaldehyde has a polar covalent bond between carbon and oxygen, leading to partial charges on the atoms, resulting in dipole moments.
yes it is becasue water is a polar molecule and therefore, can only disolve another polar molecule such as ch2o
The intermolecular force in BF3 is London dispersion forces. This is because BF3 is a nonpolar molecule, so the only intermolecular force it experiences is the temporary weak attraction between temporary dipoles.
The intermolecular force in boron trichloride is London dispersion forces. Boron trichloride is a nonpolar molecule, so it only exhibits weak London dispersion forces between its molecules.
The type of intermolecular force present in Br2 is London dispersion forces. These forces are the weakest of the intermolecular forces and result from temporary fluctuations in electron distribution around the molecule, leading to a temporary dipole moment.
Dispersion forces are weak intermolecular forces caused by temporary fluctuations in electron distribution. These forces operate between all molecules, regardless of their composition. So, yes, the molecule or atom in consideration would experience dispersion forces.
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No, CH2O (formaldehyde) is a trigonal planar molecule with the carbon atom at the center of the triangle formed by the three atoms. It is not pyramidal in shape.
The intermolecular forces are London dispersion forces.C2H4 is ethene molecule. The bonding is calledthe covalent compound,which the molecules share their electrons in order to achieve the stable electron arrangement.
The intermolecular force between BF3 molecules in liquid state is London dispersion forces. This is because BF3 is a nonpolar molecule and London dispersion forces are the primary intermolecular force among nonpolar molecules.
yes it is dipole dipole as it contain one electron attracting atom chlorin which create dipole in molecule.
When you draw the molecular structure, the structure is in fact symmetrical. When the structure is symmetrical it is non-polar therefore the forces are said to be 'london forces'/ dispersion forces.