QUESTION IMAGE
Question
assume a dna fragment is composed of 8000 base pairs. we know there are approximately 1500 thymines in the sample.
- determine the approximate amounts of:
- guanine: 6500
- cytosine: 6500
- adenine: 1500
identify the parts of a dna molecule.
w. phosphate group
x. deoxyribose sugar
- identify the process below:
- identify structure \2\:
- identify structure \6\:
- identify structure \9\:
- identify structure \3\:
name: richie copp
final exam review packet (study guide) 2026
define:
transcription: the process of copying a segment of dna into messenger rna
translation: the process where ribosomes decode mrna to synthesize a specific amino acid chain
⚡ Using what you learned: central dogma of molecular biology · 🆕 New: Chargaff's rules of base pairing
Step 1: Calculate Base Pair Quantities
A double-stranded DNA fragment of \( 8000 \) base pairs (bp) contains a total of \( 16000 \) individual nucleotides:
According to Chargaff's rules, Adenine (A) always pairs with Thymine (T), and Guanine (G) always pairs with Cytosine (C):
To find the remaining nucleotides for Guanine and Cytosine:
Note: The values filled in the image's blanks (\text{Guanine: 6500}, \text{Cytosine: 6500}, \text{Adenine: 1500}) are correct.
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Step 2: Identify DNA Replication Components
Using the provided diagram of DNA replication:
- 5. Identify the process below: DNA Replication (indicated by the title "DIAGRAM QUIZ ON DNA REPLICATION").
- 6. Identify structure "2": DNA Polymerase III (the main enzyme synthesizing the leading strand, indicated by the blue triangle/arrow).
- 7. Identify structure "6": Okazaki fragment (the short, newly synthesized DNA fragments on the lagging strand).
- 8. Identify structure "9": DNA Ligase (the enzyme that joins the Okazaki fragments together).
- 9. Identify structure "3": Single-strand binding proteins (SSBs) (proteins stabilizing the unwound single strands of DNA).
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Base Pair Calculations:
- Guanine: 6500
- Cytosine: 6500
- Adenine: 1500
DNA Replication Diagram Identification:
- 5. Identify the process below: DNA Replication
- 6. Identify structure "2": DNA Polymerase III
- 7. Identify structure "6": Okazaki fragment
- 8. Identify structure "9": DNA Ligase
- 9. Identify structure "3": Single-strand binding proteins (SSBs)