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Snowcat [4.5K]
4 years ago
11

Which of the following is the best definition of bias?

Biology
2 answers:
nexus9112 [7]4 years ago
7 0

Answer: A. Personal points of view or opinions that influence the way data are understood or presented.

Explanation: The correct answer is A

nata0808 [166]4 years ago
5 0

The closest would be D. You could also argue A but a bias cannot be called one unless there has been prior knowledge connected to it. Without any prior knowledge, it is only but an assumption

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During translation, the tRNA molecule carrying the correct amino acid corresponding to its anticodon sequence must base pair wit
katovenus [111]

Answer:

The tRNA would be unable to read the mRNA CODON, and will be unable to carry its corresponding amino acid

Explanation:

Protein synthesis occurs in two major stages; transcription and translation. Transcription involves the synthesis of a mRNA molecule while translation involves reading the sequence of the mRNA in order to synthesize amino acids that forms protein. Let's look at translation in details. Translation occurs with the help of a type of RNA molecule called transfer RNA (tRNA) present in the RIBOSOME (site of protein synthesis).

The tRNA possesses a group of three nucleotides called ANTICODON, which it uses to read the mRNA codon that is complementary to it i.e. an anticodon UAC will read mRNA codon AUG. The tRNA binds to the mRNA molecule in order to assess its nuceleotide sequence. Once, a complementary anticodon succesfully reads a particular mRNA codon, it carries the amino acid encoded by the mRNA codon it reads to the growing polypeptide chain. This is the normal translation process.

However, as stated in the question, that if a wrong anticidon successfully binds to a codon. This means that the anticodon that binds to the mRNA codon is not complementary to it. What would happen in this case is that the Anticodon will be unable to read that particular codon it binds to because the complementary base pairing rule is used to read i.e. A-U, G-C. Once, the anticodon cannot read the mRNA codon, the tRNA will also be unable to carry the amino acid that is encoded by that CODON.

6 0
4 years ago
In the process of photosynthesis, light energy is used to split water into hydrogen and oxygen. The hydrogen combines
bogdanovich [222]

Answer:

glucose

Explanation:

6CO2(carbon dioxide)+6H2O(water)-->C6H12O6(glucose)+6O2(oxygen)

water is split during the light dependent reactions and the protons are incorporated in a proton carrier that will be used in Calvin's cycle to synthesize glucose

4 0
3 years ago
A particular recessive genetic disorder is fatal before birth, so there are no homozygous recessive individuals. In a particular
Ksenya-84 [330]

Answer:

  • the allelic frequency for p is 0.967
  • the allelic frequency for q is 0.033

Explanation:

According to Hardy-Weinberg, the allelic frequencies in a locus are represented as p and q, referring to the alleles. The genotypic frequencies after one generation are p² (Homozygous for allele p), 2pq (Heterozygous), q² (Homozygous for the allele q). Populations in H-W equilibrium will get the same allelic frequencies generation after generation. The sum of these allelic frequencies equals 1, this is p + q = 1.

In the exposed example,

  • A recessive genetic disorder is fatal before birth, so there are no homozygous recessive individuals
  • In a particular population, one in 15 individuals is a carrier for this disorder.

What are the allele frequencies of the dominant (p) and recessive (q) alleles in this population?

If 1 of 15 individuals are carriers for this disorder, this means that 1/15 are heterozygous, 2pq. So, 2pq = 1/15 = 0.066

Now we must calculate the allelic frequencies.

We know that 1 in 15 individuals are heterozygous, and we also know that there are no recessive homozygous, q², because they can not survive, so of the 15 individuals only one is heterozygous and the rest 14 individuals must be dominant homozygous, p².

The dominant homozygous genotypic frequency is

p²= 14/15 = 0.933

And by clearing the next equation we can get the allelic frequency for p

p²= 0.933

p = √0.933

p = 0.967

So now we know that the allelic frequency for p is 0.967  

This means that the allelic frequency for q or p is 0.033, which we deduce by clearing the equation p + q = 1

                          0.967 + q = 1

                         q = 1 - 0.967

                          q = 0.033

  • the allelic frequency for p is 0.967
  • the allelic frequency for q is 0.033
5 0
3 years ago
What is biomass in the ecological pyramid
Temka [501]

the amount of energy in the pyramid

7 0
3 years ago
All fungi are : <br><br> eukaryotic<br> prokaryotic <br> unicelular<br> multicelular
kirill [66]
All except prokaryotic
4 0
4 years ago
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