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Masja [62]
4 years ago
11

PLEASE HELP ME ASAP PLEASE !!!!!! What types of evidence did Darwin use to support his theory of change over time ???? I want a

Full answer please ...
Biology
1 answer:
BlackZzzverrR [31]4 years ago
4 0
Darwin made numerous observations and collected evidence that led him to purpose a revolutionary hypothesis about the way life changes over time. I hope this helped :)
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Which chromosomal abnormality results from missing an entire chromosome?
Zarrin [17]

Answer:

aneuploidy

Explanation:

The most common type of chromosomal abnormality is known as aneuploidy, an abnormal chromosome number due to an extra or missing chromosome. Most people with aneuploidy have trisomy (three copies of a chromosome) instead of monosomy (single copy of a chromosome).

8 0
4 years ago
Help please, 30 points.
Kisachek [45]

Answer:

Option 1 i think it's A

Explanation:

hope it's helpful

Answer of 2nd question

<em>option </em><em>A </em>

<em>glucose </em><em>is </em><em>a </em><em>unit </em><em>of </em><em>energy</em>

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
Which plane divides the body into left and right portions?
galina1969 [7]

The plane that divides the body into left and right portions is known as the sagittal plane also known as the median plane. Sagittal plane bisects the body into two halves and the plane motion occurs around a coronal axis. Movements in the sagittal plane are the flexion and the extension. The Flexion movement involves the bending movement in which the relative angle between two adjacent segments decreases. The Extension movement involves a straightening movement in which the relative angle between the two adjacent segments increases. In general, both flexion and extension movement occur in many joints in the body, which include shoulder, wrist, vertebral, elbow, knee, foot, hand and hip.

The sagittal plane has two subsections; they are the Midsagittal and the Parasagittal. The midsagittal runs through the median plane and divides along the line of symmetry while the parasagittal plane is parallel to the mid-line and divides the body into two unequal halves.



3 0
4 years ago
In skeletal muscle, the area that is composed only of both thick and thin filaments is the
Angelina_Jolie [31]

Answer:

A-Band

Explanation:

Sarcomere is the basic unit of skeletal muscle and shows various striations under the microscope.

Anisotropic band or A-Band is the portion of sarcomere that contains both the thick and thin filaments . A-Band appaers dark under the microscope. Thick filaments are consist of actin and thin filaments consists of myosin.

I-Band contains only thin filaments of myosin. H- zone contains only thick filaments and no thin filament. Sarcomere is the unit of a skeletal muscle. Synapse is the junction between two neurons.

Thus, the correct answer is option (A).

8 0
4 years ago
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