(a) Interpretation: The substance with larger dispersion forces needs to be determined. C 8 H 18 , Octane, C 2 H 6 and Ethane Concept introduction: Dispersion forces sometimes are known as London Forces, induced-dipole forces, van der Waals forces or London Dispersion forces. They are induced-dipole forces which develop from variations within the electron’s arrangement around the molecule. Even molecule which is non-polar will not contain the perfect dispersal of charge for every moment of time.
(a) Interpretation: The substance with larger dispersion forces needs to be determined. C 8 H 18 , Octane, C 2 H 6 and Ethane Concept introduction: Dispersion forces sometimes are known as London Forces, induced-dipole forces, van der Waals forces or London Dispersion forces. They are induced-dipole forces which develop from variations within the electron’s arrangement around the molecule. Even molecule which is non-polar will not contain the perfect dispersal of charge for every moment of time.
Solution Summary: The author explains that induced-dipole forces develop from variations within the electron’s arrangement around the molecule. Octane has larger dispersion forces than ethane.
The substance with larger dispersion forces needs to be determined.
C8H18, Octane, C2H6 and Ethane
Concept introduction:
Dispersion forces sometimes are known as London Forces, induced-dipole forces, van der Waals forces or London Dispersion forces. They are induced-dipole forces which develop from variations within the electron’s arrangement around the molecule. Even molecule which is non-polar will not contain the perfect dispersal of charge for every moment of time.
Interpretation Introduction
(b)
Interpretation:
The substance with larger dispersion forces needs to be determined.
HCl or HI
Concept introduction:
Dispersion forces sometimes are known as London Forces, induced-dipole forces, van der Waals forces or London Dispersion forces. They are induced-dipole forces which develop from variations within the electron’s arrangement around the molecule. Even molecule which is non-polar will not contain the perfect dispersal of charge for every moment of time.
Interpretation Introduction
(c)
Interpretation:
The substance with larger dispersion forces needs to be determined.
H2O or H2Se
Concept introduction:
Dispersion forces sometimes are known as London Forces, induced-dipole forces, van der Waals forces or London Dispersion forces. They are induced-dipole forces which develop from variations within the electron’s arrangement around the molecule. Even molecule which is non-polar will not contain the perfect dispersal of charge for every moment of time.