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Forces at work in a molecule Forces at work in a molecule

Molecules experience two types of forces: intramolecular (or bonding) and intermolecular (or nonbonding) Intramolecular Molecules experience two types of forces: intramolecular (or bonding) and intermolecular (or nonbonding) Intramolecular attraction Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd. Silberberg, M. 2010. Principles of General Chemistry. 2 nd ed. New York: Mc. Graw-Hill.

Intramolecular forces hold atoms together in a single molecule • strong force • types Intramolecular forces hold atoms together in a single molecule • strong force • types a. ionic bond b. covalent bond c. metallic bond • responsible for the chemical properties of the substance Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill. Silberberg, M. 2010. Principles of General Chemistry. 2 nd ed. New York: Mc. Graw-Hill.

Intermolecular forces exist between the molecules • weak force • influence the physical properties Intermolecular forces exist between the molecules • weak force • influence the physical properties of the substance * note: the molecules need not be identical Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd. Silberberg, M. 2010. Principles of General Chemistry. 2 nd ed. New York: Mc. Graw-Hill.

Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Intermolecular forces of attraction (IMFA) Intermolecular forces of attraction (IMFA)

Opposites Attract Opposites Attract

Opposites Attract Opposites Attract

Types of IMFA • • * • Ion-dipole force Dipole-dipole force London dispersion force Types of IMFA • • * • Ion-dipole force Dipole-dipole force London dispersion force (LDF) Hydrogen bonding • permanent charge separation * momentary charge separation

Ion-dipole force exists between an ion and the partial charge on the end of Ion-dipole force exists between an ion and the partial charge on the end of a polar molecule Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd.

Dipole-dipole force exists between polar molecules Brown, T. , E. Le. May, and B. Dipole-dipole force exists between polar molecules Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd.

London dispersion force (LDF) exists between all molecules, including nonpolar molecules • electrons constantly London dispersion force (LDF) exists between all molecules, including nonpolar molecules • electrons constantly move • at a certain instance, more electrons can be concentrated in one side of a molecule over another • this gives temporary polarity to the molecule Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd.

LT #2 • • Feb 15 (Wed) 4: 30 -6: 00 pm Section B: LT #2 • • Feb 15 (Wed) 4: 30 -6: 00 pm Section B: Sec A 123 Section F: Sec A 124

Types of IMFA • • * • Ion-dipole force Dipole-dipole force London dispersion force Types of IMFA • • * • Ion-dipole force Dipole-dipole force London dispersion force (LDF) Hydrogen bonding • permanent charge separation * momentary charge separation

Hydrogen bonding is a special type of dipole-dipole interaction between hydrogen directly bonded to Hydrogen bonding is a special type of dipole-dipole interaction between hydrogen directly bonded to F, O, or N and F, O, or N atom – covalent bond. . . hydrogen bond Brown, , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Hydrogen bonding is unusually strong • F, O, and N are highly electronegative, thus Hydrogen bonding is unusually strong • F, O, and N are highly electronegative, thus bond between hydrogen and F, O, or N is highly polar F—H O—H N—H • hydrogen has no inner core electrons, making it bare and relatively small • being small, H can come close to F, O, or N, resulting to a strong bond Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd.

borax poly(vinyl alcohol) borax poly(vinyl alcohol)

Intramolecular force Intermolecular forces Increasing strength Brown, T. , E. Le. May, and B. Intramolecular force Intermolecular forces Increasing strength Brown, T. , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd.

Determine the IMFA/s present in the following • CH 3 OH • Br 2 Determine the IMFA/s present in the following • CH 3 OH • Br 2 – LDF • KCl in H 2 O – LDF, ion-dipole, hydrogen bonding – LDF, hydrogen bonding

Determine the IMFA/s present in the following • H 2 S – LDF, dipole-dipole Determine the IMFA/s present in the following • H 2 S – LDF, dipole-dipole • CH 3 OCH 3 – LDF, dipole-dipole

IMFA and the states of matter IMFA and the states of matter

Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Gas molecules have weak IMFAs • interaction between the molecules is minimal, and so Gas molecules have weak IMFAs • interaction between the molecules is minimal, and so gas molecules fill a container • distances between gas molecules are so great, and so gases are highly compressible and have low densities Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Liquid molecules have stronger IMFAs • molecules are held together by one or more Liquid molecules have stronger IMFAs • molecules are held together by one or more types of attractive forces, and so liquid molecules have definite volume but indefinite shape • distances between liquid molecules are small, and so liquids are slightly compressible and have high densities Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Solid molecules have very strong IMFAs • molecules are held rigidly in position, and Solid molecules have very strong IMFAs • molecules are held rigidly in position, and so solid molecules have definite volume and definite shape • distances between solid molecules are even smaller than in liquids, and so solids are almost incompressible and have high densities Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Ch 2 B • Tom’s experiment: p. H of common substances and titration • Ch 2 B • Tom’s experiment: p. H of common substances and titration • Please bring your own “common substances”

LT #2 • • • Feb 15 (Wed) 4: 30 -6: 00 We’ll still LT #2 • • • Feb 15 (Wed) 4: 30 -6: 00 We’ll still meet during class hours Sec B: Sec A 123 Sec F: Sec A 124

Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

If the molecules have enough energy, they can overcome the IMFAs and change from If the molecules have enough energy, they can overcome the IMFAs and change from one state of matter to another * Energy is the capacity to do work or to produce change. It may take different forms, and heat is one of them. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

When a liquid boils, the weak IMFAs are overcome, but the strong covalent bonds When a liquid boils, the weak IMFAs are overcome, but the strong covalent bonds holding the atoms together within each molecule remain unaffected * The same is true when a solid turns into liquid or gas Silberberg, M. 2010. Principles of General Chemistry. 2 nd ed. New York: Mc. Graw-Hill.

Water Water

Each O atom of a water molecule is “bonded” to four H atoms, two Each O atom of a water molecule is “bonded” to four H atoms, two by covalent bonds and two by hydrogen bonds. Consequently, water molecules can form three-dimensional structures Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

The highly ordered three-dimensional structure of ice prevents the molecules from getting too close The highly ordered three-dimensional structure of ice prevents the molecules from getting too close to one another. Consequently, it has a lower density than liquid water Brown, , E. Le. May, and B. Bursten. 2000. Chemistry: The Central Science. 8 th ed. Phils: Pearson Education Asia Pte. Ltd. Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

The ice layer that forms on the surface (and not at the bottom) of The ice layer that forms on the surface (and not at the bottom) of a lake insulates the water beneath and maintains a high enough temperature to sustain aquatic life Chang, R. 2002. Chemistry 7 th ed. Singapore: Mc. Graw-Hill.

Soap Soap

A soap molecule can clean because its two ends are strikingly different Ionic Water-loving A soap molecule can clean because its two ends are strikingly different Ionic Water-loving (aka hydrophilic) Nonpolar Water-hating (aka hydrophobic) Oil-loving Mc. Murry, J. 2011. Organic Chemistry with Biological Applications. 2 nd ed. California: Brooks/Cole.

The hydrocarbon tails interact with the oil to form hydrophobic balls, while the ionic The hydrocarbon tails interact with the oil to form hydrophobic balls, while the ionic heads stick out and interact with water micelle Mc. Murry, J. 2011. Organic Chemistry with Biological Applications. 2 nd ed. California: Brooks/Cole.

And others… And others…

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cellulose, the molecule found in tissue cellulose, the molecule found in tissue

To cook bulalo, one needs to boil beef in water with salt. During the To cook bulalo, one needs to boil beef in water with salt. During the process, the fat from the meat is seen floating on top of the broth, while the salt is not visible. http: //norecipes. com/blog/2009/06/11/bulalo-recipe/

where R = C 11 to C 19 fat where R = C 11 to C 19 fat

where R = C 11 to C 19 where R = C 11 to C 19