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∙ 10y agoThe question is incomplete.
No options (for which of the following) are given to answer the question.
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∙ 10y agolondon dispersion and dipole-dipole is the strongest in this molecule.
Yes; all compounds possess London dispersion forces between their molecules, because all compounds contain electrons. However, in the case of H2CO, this will not be the strongest intermolecular force. The strongest will be dipole-dipole interaction, because H2CO is a polar molecule.
Cl2 is non polar.So there are london dispersion
Yes,CH4 is non polar.So it has london dispersion.
Yes, the London dispersion force is very weak.
weakest to strongest: they are in this order: London dispersion, dipole-dipole, hydrogen bonding, ionic
london dispersion
london dispersion and dipole-dipole is the strongest in this molecule.
Elements with high most mass.
The only intermolecular forces in this long hydrocarbon will be dispersion forces.
Yes; all compounds possess London dispersion forces between their molecules, because all compounds contain electrons. However, in the case of H2CO, this will not be the strongest intermolecular force. The strongest will be dipole-dipole interaction, because H2CO is a polar molecule.
hydrogen, London dispersion, and dipole - dipole
Cl2 is non polar.So there are london dispersion
Yes,CH4 is non polar.So it has london dispersion.
Yes, the London dispersion force is very weak.
Dipole-Dipole and covalent sigma bond forces.
weakest to strongest: they are in this order: London dispersion, dipole-dipole, hydrogen bonding, ionic