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WorksheetsAP Classroom Topic 1.3 - CFU - AP Biology - Major Grade
Total questions: 50
Worksheet time: 2hrs 27mins
Topic 1.3 - Introduction to Biological Macromolecules
True or False
What will we learn #3 states:
What are some key properties of monomers?
A. True
B. False
Topic 1.3 - Introduction to Biological Macromolecules
True or False
What will we learn #1 states:
What are dehydration synthesis reactions?
A. True
B. False
Topic 1.3 - Introduction to Biological Macromolecules
True or False
What will we learn #2 states:
What type of bond connects polymers in biological macromolecules?
A. True
B. False
Topic 1.3 - Introduction to Biological Macromolecules
True or False
What will we learn #5 states:
What are hydrolysis reactions?
A. True
B. False
Topic 1.3 - Introduction to Biological Macromolecules
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According to the video:
Monomers are chemical subunits used to create (a) .
Topic 1.3 - Introduction to Biological Macromolecules
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Polymer is a (a) made of many monomers.
Topic 1.3 - Introduction to Biological Macromolecules
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A (a) bond is formed between two interacting monomers.
Topic 1.3 - Introduction to Biological Macromolecules
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Monomers have specific (a) properties that allow them to interact with one another.
Topic 1.3 - Introduction to Biological Macromolecules
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All monomers contain carbon and are used to build (a) macromolecules.
Topic 1.3 - Introduction to Biological Macromolecules
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Polymers are (a) to the monomers they consists of.
Topic 1.3 - Introduction to Biological Macromolecules
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Covalent bonds are used to connect (a) together.
Topic 1.3 - Introduction to Biological Macromolecules
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According to the video:
Lipids don’t have (a) monomers.
Topic 1.3 - Introduction to Biological Macromolecules
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Daily Video 1
According to the video:
In this video, will focus on hydrolysis and (a) synthesis and the properties of monomers that allow them to form macromolecules.
Topic 1.3 - Introduction to Biological Macromolecules
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According to the video:
Dehydration (a) reactions are used to create macromolecules.
Topic 1.3 - Introduction to Biological Macromolecules
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According to the video:
Dehydration Synthesis reactions form (a) bonds.
Topic 1.3 - Introduction to Biological Macromolecules
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(a) reactions use water to break down biological macromolecules.
Topic 1.3 - Introduction to Biological Macromolecules
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Dehydration synthesis reactions are used to create (a) .
Topic 1.3 - Introduction to Biological Macromolecules
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According to the video:
The subcomponents of a water molecule (H and OH) are (a) from interacting monomers and a covalent bond forms between them.
Topic 1.3 - Introduction to Biological Macromolecules
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According to the video:
The H and OH join (a) to form a molecule of water, water is a byproduct of this reaction.
Match the following monomers with the correct polymer as stated in the 1.3 video.
Monosaccharide
Carbohydrate
Amino acid
Protein
fatty acid
lipids
Nucleotide
nucleic acid
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
(a) reactions cleave covalent bonds.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
A dehydration (a) creates carbohydrates.
Topic 1.3 - Introduction to Biological Molecules
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(a) monomers have hydroxides (OH) and hydrogen atoms (H) attached.
Topic 1.3 - Introduction to Biological Molecules
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The hydroxide (OH) and hydrogen (H) join forming a (a) molecule (H2O).
Topic 1.3 - Introduction to Biological Molecules
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A (a) synthesis creates proteins.
Topic 1.3 - Introduction to Biological Molecules
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(a) monomers are called amino acids.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
One monomer will lose an entire hydroxide while the other monomer will only lose the (a) v from a hydroxide.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
A covalent bond will form where the hydroxide and hydrogen atom were (a) .
Topic 1.3 - Introduction to Biological Molecules
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Polymers are (a) (broken down) into monomers during a hydrolysis reaction.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
Covalent bonds between the monomers are (a) (broken) during a hydrolysis reaction.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
A water molecule is hydrolyzed into subcomponents (H and OH) and each subcomponent is added to a (a) monomer.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
Each amino acid has an amino group (NH2) terminus and a (a) group (COOH) terminus.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
A water molecule is hydrolyzed and each (a) of water (H and OH) will be bonded to different amino acids.
Topic 1.3 - Introduction to Biological Molecules
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According to the video:
A hydroxide (OH) is lost from the carboxyl group of one amino acid and a (a) atom (H) is lost from the amino group of another amino acid.
Topic 1.3 - Introduction to Biological Molecules
True or False
According to the video:
The hydroxide (OH) and hydrogen atom (H) will join forming a water molecule (H2O).
A. True
B. False
Topic 1.3 - Introduction to Biological Molecules
True or False
According to the video:
Covalent bonds between amino acids can be cleaved (broken).
A. True
B. False
Match the following:
A dehydration synthesis creates proteins
Proteins can undergo hydrolysis reaction
Dehydration synthesis makes carbohydrate
Which of the following is common feature of the illustrated reactions showing the linking of monomers to form macromolecules?
A. Two identical monomers are joined by a covalent bond.
B. Two different monomers are joined by a covalent bond.
C. Monomers are joined by a covalent bond, and a water molecule is produced.
D. Monomers are joined by ionic bonds, and a water molecule is produced.
Which of the following is an accurate description of the process shown in Figure 1 ?
A. The linking of amino acids with an ionic bond as an initial step in the protein synthesis process.
B. The formation of a more complex carbohydrate with the covalent bonding of two simple sugars.
C. The hydrolysis of amino acids with the breaking of covalent bonds with the release of water.
D. The formation of a covalent peptide bond in a dehydration synthesis reaction.
Which statement is the most accurate description of the reaction shown in Figure 1?
A. It represents monomers linked by dehydration synthesis.
B. It represents a polypeptide chain that folds to form the tertiary structure.
C. It represents a polypeptide chain that is denatured into the primary structure.
D. It represents a polypeptide chain that is broken down through a hydrolysis reaction.
Biomolecular Metabolism Fill In Notes
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Carbon has four (a) electrons that can be used for bonding.
Biomolecular Metabolism Fill In Notes
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The combination of chemical reactions that (a) and hydrolyze biomolecules for energy storage and release in an organism.
Biomolecular Metabolism Fill-In Notes
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Catabolic reactions break down biological polymers into monomers to help generate (a) .
Biomolecular Metabolism Fill-In Notes
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Anabolic reactions are (a) , meaning they require a net investment of free energy into the bonds between the monomers.
Biomolecular Metabolism Fill-In Notes
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Carbon based molecules can form a variety of different (a) because of its ability to form four bonds.
Biomolecular Metabolism Fill-In Notes
Biomolecule Terminology
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Dimer - two monomers (a) bonded together.
Biomolecular Metabolism Fill-In Notes
Biomolecule Terminology
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Monomer - (a) subunit (building block) of a biomolecule.
Biomolecular Metabolism Fill-In Notes
Biomolecule Terminology
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Polymer - (a) monomers covalently bonded together.
Biomolecular Metabolism Fill-In Notes
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As per your notes,
More available structures = more available (a)
Biomolecular Metabolism Fill-In Notes
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As per your notes,
All living organisms need biomolecules!
Four main types:
1. (a)
2. Lipids
3. Proteins
4. Nucleic Acids
