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HAPPY THURSDAY Bellwork: •Copy this model onto your bellwork. •Use this same information and your notes (from yesterday) to fill in the chart on Page 17 of your I.B.B. – only the carbohydrate column.
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HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Jan 12, 2016

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Page 1: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

HAPPY THURSDAY

Bellwork:• Copy this model onto

your bellwork.• Use this same

information and your notes (from yesterday) to fill in the chart on Page 17 of your I.B.B. – only the carbohydrate column.

• Notecard definitions due TOMORROW.

Page 2: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Make sure your I.B.B.s are

updated and organized.

Page 3: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Continued from yesterday…….Biomolecule Foldable – Part 1 (Carbohydrates)

1. One full sheet per person2. Hotdog fold, then unfold3. Fold a Window Pane4. Cut creases to open window5. Window Pane 1

a. Outline border with one colorb. “Carbohydrates”c. Draw a glucose moleculed. Label the “Glucose” molecule

6. Outside Window Pane 1a. 2 Functionsb. 4 Examples

7. Inside Lower Panel 1a. “Monomer”

b. Monomer Definitionc. Draw a picture of monomers

8. Inside Lower Panel 2a. “Polymer”b. Polymer Definitionc. Draw a picture of a polymer

9. Inside Upper Panel 1 a. “Dehydration Synthesis”b. Dehydration Synthesis Definitionc. Draw a picture of a Dehydration

Synthesis

10. Inside Upper Panel 2 a. “Hydrolysis”b. Hydrolysis Definitionc. Draw a picture of Hydrolysis

Page 4: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

H

Page 5: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.
Page 6: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

StandardB.9A – Compare the structure and functions of

different types of biomolecules.

Essential Question How are lipids essential for life?

Page 7: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Lipids are molecules that are not soluble in water. They are nonpolar and hydrophobic.

Page 8: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

The three categories of lipids include:• Fats

• Oils

• Waxes

Page 9: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Lipids can be used to:• Store energy.• Contain the most

energy per gram of any biomolecule. (9 Cal/gram)

• To form biological membranes and waterproof coverings. (waxy cuticle)

Page 10: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Many lipids are formed when a glycerol molecule combines with compounds called fatty acids.

Page 11: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Lipids contain only carbon (C), hydrogen (H), and oxygen (O).

Page 12: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Lipids

Structure: Functions:

Monomer: Polymer:

•Chain shaped•A backbone and 3 tails

Elements:•C, H, O

•Source for long term energy•Primary component of the cell membrane•waxy coating on the top of leaves (cuticle).

Good to know:•Saturated fats: contain single bonds•Unsaturated fats: contain double bonds

•Fatty acids •Triglyceride (lipid)

Fill in Chart

Page 13: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Biomolecule Foldable – Part 2 (Lipids)

1. Window Pane 2 a. Outline border with another colorb. “Lipids”c. Draw a triglyceride molecule “E”d. Label the 3 “Fatty Acids” and

“Glycerol Backbone” 2. Inside Window Pane 2

a. 2 Functionsb. 2 Examples

Page 14: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

H

Page 15: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.
Page 16: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

Energy in Food

• Burning carbohydrates – watch and write down your observations• Burning lipids – take notes and write down any observations• Calories in food – take notes…MAKE SURE you write down how many

calories per gram in each biomolecule AND the daily recommended allowance

Page 17: HAPPY THURSDAY Bellwork: Copy this model onto your bellwork. Use this same information and your notes (from yesterday) to fill in the chart on Page 17.

As always, summarize what you have learned about carbohydrates and lipids in 36 words. In your summary, you must use the words:

carbohydrateslipidsenergy