_____ is a special case of explosive speciation in which new species form rapidly in response to numerous "open" ecological niches. peripatric speciation adaptive radiation allopatric speciation co-speciation sympatric speciation

Answers

Answer 1
Adaptive radiation is a special case of edplosive speciation in which new species form rapidly in response to numerous "open" ecological niches 
Answer 2

Final answer:

Adaptive radiation is a form of rapid speciation where new species evolve to fill different ecological niches, often after a mass disaster or colonization event provides access to new resources.

Explanation:

Adaptive radiation is a special case of explosive speciation in which new species form rapidly in response to numerous "open" ecological niches. It involves the relatively rapid evolution from a single species to several species to fill a diversity of available ecological niches.

Examples include the cichlid fish in East Africa's lakes and Darwin's finches in the Galapagos, where a population experiences speciation following a mass disaster or colonization of a new area with diverse habitats. These events provide access to a range of unexploited resources and niches, leading to the diversification of the species.


Related Questions

Morgan breeds and sells snakes. he knows that he can make the most money by breeding and selling albino snakes. albinism is a recessive trait. his female albino corn snake just produced six offspring. two displayed normal coloration and four were albino. what do you know about the genotype of the baby snakes with the normal coloration?
a. they must be homozygous dominant.
b. they must be homozygous recessive.
c. they must be heterozygous.
d. they could be either heterozygous or homozygous dominant.
e. there is not enough information to determine their genotype but we know that they must carry the dominant allele.

Answers

i want to say e but it may not be right

Based on the given information, we can determine that the genotype of the baby snakes with normal coloration could be either heterozygous or homozygous dominant (option D).

What is albinism?

Albinism is a genetic condition characterized by a lack or reduction of pigmentation in the skin, hair, and eyes. It is caused by a mutation in one or more genes that are responsible for the production of melanin, the pigment that gives color to our skin, hair, and eyes.

This mutation disrupts the normal production or distribution of melanin, resulting in a range of symptoms including very light or white hair, pale skin, and light-colored or pinkish eyes. People with albinism are often more sensitive to sunlight and have a higher risk of sunburn and vision problems. Albinism can occur in humans as well as in animals across various species.

Since four of the offspring were albino, it can be inferred that the female albino corn snake is homozygous recessive (aa) for the albinism trait.

Since the female snake produced offspring with normal coloration, it means that she must carry the dominant allele for coloration. The normal-colored baby snakes could have inherited either a dominant allele from the mother (Aa) or two dominant alleles (AA) if the mother is homozygous dominant. Therefore, the normal-colored baby snakes could be either heterozygous (Aa) or homozygous dominant (AA).

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All the structures in order through which air passes as it is inhaled through the nares

Answers

Nostrils- Nasal chambers - Internal nares - Laryngopharynx - Larynx - Trachea - Primary bronchi - Diaphram - Lungs- Bronchial intercom - Alveoli.
I hope it helped u..!!

Which type of radiation has the shortest wavelength? visible light X-rays gamma rays radio waves

Answers

Answer:

gamma rays

Explanation:

There are different types of radiations/electromagnetic waves within the electromagnetic spectrum. These include:

radio wavesvisible raysX-raysinfra-redultra-violet raysmicrowaveGamma rays

The order of arrangement according to their wavelength is:

Gamma rays < X-rays < uv rays < visible rays < Infra-red < microwave < radio waves.

Gamma rays has the shortest wavelength while radio waves has the longest wavelength.

The correct answer is gamma rays.

Final answer:

The type of radiation with the shortest wavelength is gamma rays. These are produced by the radioactive decay of atomic nuclei and are high in energy and potential for damage.

Explanation:

There are different types of radiation present in the electromagnetic spectrum, and they differ in terms of energy, frequency, and wavelength. These types are visible light, X-rays, gamma rays, and radio waves. Among these types of radiation, the one with the shortest wavelength is gamma rays. Gamma rays are highly penetrating electromagnetic radiation of a kind arising from the radioactive decay of atomic nuclei. They have the shortest wavelength and as a result, they possess the highest energy and are capable of causing significant damage when they interact with living cells.

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Most irregular galaxies are thought to have formed _____. from nebulas that cooled very quickly right after the big bang from cosmic background radiation from collisions between other galaxies

Answers

Most irregular galaxies are thought to have formed from collisions between other galaxies.

This is just one wat that irregular galaxies are formed; the collision is due to the interaction of their gravitational forces. These galaxies might have been regular before the collision, but are not deformed. 
Another form of irregular galaxies are the ones that are still very young and therefore have not yet reached their symmetrical state.
From collisions between other galaxies. 

The specific chamber of the heart that is indicated by letter a is called the __________.

Answers

That would be the right atrium.

Hope that helps:)

What are the two networks of tubes in vascular plants called?

Answers

Xylem and phloem are the two networks of tubes in vascular plants.
Hope I helped :)

Organisms that are photosynthetic are classified as A) animals. B) bacteria. C) fungi. D) plants.

Answers

Answer:

Its D

Explanation:

Answer: plants!!

Explanation:

What are the two little black dots at one end of the planarian called? What do they do for this organism?

Answers

Two little dots at the end of Planaria are called eye-spots.
Eye-spots (also known as ocelli) have a role in the vision of Planaria. The eye-spots have a possibility to detect the intensity of light and are used to move away from light sources.

Which muscle do clients need proper extensibility of before performing the ball medicine ball (mb) pullover throw exercise, in order to decrease stress to the low back and shoulders?

Answers

It is important to ensure that a client has proper extensibility of the latissimus dorsi muscle before performing the ball medicine ball (MB) pullover throw exercise to decrease stress to the low back and shoulders. These muscles connects the upper extremity to the vertebral column. They are responsible for extension, adduction, transverse extension also known as horizontal abduction, flexion from an extended position, and internal rotation of the shoulder joint. 

The food additive red dye no. 2 is known to cause cancer. as such, it is a __________.

Answers

As such, it is a Carcinogen which is basically just a substance that is known to cause cancer.

Hope this helped :)

Explain the significance of snyder agar medium and its differential nature as a means to detect dental caries

Answers

Snyder agar medium has bromocresol green, a color indicator that will have a different color in acid pH. If there are any bacteria that could ferment the glucose like lactobacilli, the pH of the agar will become acid. Acid pH will cause the agar color change from green to yellow.

Snyder agar medium is used to detect dental caries by monitoring acid production from sugar fermentation by bacteria like Streptococcus mutans. Its differential nature lies in the color change, from green to yellow, indicating acid production and the presence of cariogenic bacteria. This helps in identifying bacterial activity associated with dental caries.

The Snyder agar medium is used in microbiology to detect and quantify dental caries by monitoring acid production from sugar fermentation by specific bacteria. This medium is designed to identify Streptococcus mutans and other acidogenic bacteria, which are primary culprits in the formation of dental caries. The Snyder agar contains glucose and a pH indicator bromcresol green, which changes color from green to yellow as the pH drops due to acid production.

Differential Nature of Snyder Agar:

The differential nature of Snyder agar lies in its ability to change color in response to the acidity produced by bacterial fermentation. When acid-producing bacteria like S. mutans ferment the glucose present in the medium, the resulting acid decreases the pH. This pH drop leads to a color change from green to yellow, indicating the presence and activity of cariogenic bacteria. This characteristic enables researchers and clinicians to differentiate between bacteria that can produce acid and those that cannot, providing an effective means to detect dental caries.

Key Points:

Streptococcus mutans is a primary bacterium detected using Snyder agar.Snyder agar contains glucose and bromcresol green as a pH indicator.The medium changes color from green to yellow in response to acid production by fermenting bacteria.

What substances move freely through the shell of the egg?

Answers

chorion, amnion, & alantosis

The correct answer is gases oxygen and carbon dioxide, which diffuse freely across the shell of an egg.  

The four specialized membranes of the amniotic egg are amnion, chorion, yolk sac, and allantois. The chorion and the allantois exchange gases between the embryo and the air. Oxygen and carbon dioxide diffuse freely across the shell.  

An eggshell refers to the outer covering of a hard-shelled egg and of some kinds of eggs with soft outer coats. The shells of the amniotic eggs are calcareous, formed of calcium carbonate.  


Where does liquified food pass through the villi into the blood stream?

Answers

Digested food broken down in the small intestine is the size of molecules and can now pass through the villi into the blood stream through the process of diffusion

A homoplasmic cell carries
a. a mixture of organelle genomes.
b. only one type of organelle dna.
c. only one mitochondrion.
d. two identical nuclei.
e. only linear chromosomes.

Answers

I don't know the answer i am so sorry.
Final answer:

A homoplasmic cell carries only one type of organelle DNA, referring specifically to the genetic makeup of the mitochondria within the eukaryotic cells.(Option B)

Explanation:

A homoplasmic cell refers to one in which all of the cell's mitochondria contain the same genetic makeup. Mitochondria are the energy-producing organelles in eukaryotic cells and they contain their own small circular DNA (mtDNA). Therefore, homoplasmic cells carry only one type of organelle DNA in all their mitochondria.

These mitochondria are passed from the mother to the offspring and are not mixed with paternal mitochondria, ensuring that the mtDNA is nearly identical across all mitochondria within an individual. It's important to note that having a homoplasmic cell does not pertain to the number of mitochondria, chromosome structure, or nuclear constitution within the cell.

The correct answer to the question 'A homoplasmic cell carries' is b. only one type of organelle DNA.

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Speciation without geographic isolation is called ________ speciation.
a.sympatric
b.allopatric
c.incomplete
d.diversifying

Answers

Final answer:

Sympatric speciation is the term used to describe the formation of new species without geographic isolation. Unlike allopatric speciation, it happens within a single geolocation, such as a group of insects developing genetic changes due to a shift in dietary preferences. Correct option is A.

Explanation:

Speciation without geographic isolation is known as sympatric speciation. In contrast to allopatric speciation, where a physical barrier such as a river or a mountain range separates a population into two or more groups leading to the evolution of new species, sympatric speciation occurs within a single geographic location. An example of this might be a group of insects living on a single tree which begin to eat different kinds of leaves, thus altering their diet and eventually leading to genetic changes that result in the creation of a new species.

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Final answer:

Speciation without geographic isolation is referred to as sympatric speciation. This can occur through different mechanisms leading to reproductive isolation within the same habitat.

Explanation:

Speciation without geographic isolation is called sympatric speciation. This type of speciation can occur through various mechanisms such as polyploidy, natural selection or sexual selection, leading to reproductive isolation even though the species share the same habitat. It's contrasted with allopatric speciation, which involves physical geographic barriers leading to speciation. Sympatric speciation is less common but can be observed particularly in plants and certain groups of insects.

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Which factor can cause a noninfectious disease fungus virus bacteria environment?

Answers

the environment i believe is right

Which is a function of the collecting ducts? which is a function of the collecting ducts? absorb electrolytes actively and water by osmosis in the same segments form a large volume of very concentrated urine or a small volume of very dilute urine form a large volume of very dilute urine or a small volume of very concentrated urine absorb water and electrolytes into the tubular network?

Answers

I believe the function of the collecting ducts is to absorb water and electrolytes into the tubular network. The collecting duct participates in electrolyte and fluid balance through reabsorption and excretion, processes that are regulated by the hormones vasopressin (ADH) and aldosterone. 

Is a period characterized by rapid physical growth and sexual maturation?

Answers

If you mean physically then yes, but more complicated and chemical processes happen inside a woman's body during a "period".

Hope it helped!

Attached earlobes are recessive to free earlobes. what is the probability of having a child with attached earlobes when an individual with attached earlobes mates with an individual heterozygous for free earlobes? attached earlobes are recessive to free earlobes. what is the probability of having a child with attached earlobes when an individual with attached earlobes mates with an individual heterozygous for free earlobes? 25% 0% 50% 75%

Answers

I believe that the probability of having an individual with attached earlobes will be 50%. Since the attached earlobes is recessive then its genotype will be (ee), for the unattached ear lobes the genotype will be EE, Ee. Therefore, mating between an individual with attached ear lobes (ee) and one with unattached ear lobes, heterozygous, Ee,  the offspring will be; Ee, Ee, ee, or ee. Therefore; half of the offspring will have unattached ear lones (heterozygous) while another half will have attached ear lobes. 
Final answer:

The probability that a child of an individual with attached earlobes ('ff') and a heterozygous individual with free earlobes ('Ff') will have attached earlobes is 50%.

Explanation:

The probability of having a child with attached earlobes when an individual with attached earlobes mates with an individual heterozygous for free earlobes can be calculated using Punnett squares. Since attached earlobes are a recessive trait, a person with attached earlobes has the genotype 'ff'. A heterozygous person with free earlobes has the genotype 'Ff'. When we cross these genotypes (ff x Ff), the possible genotypes for the offspring are Ff (free earlobe) and ff (attached earlobe).

The Punnett square for this cross would show that there is a 50% chance (2 out of 4) for the offspring to inherit the genotype 'ff' and therefore have attached earlobes. The other 50% would inherit the genotype 'Ff' and express the dominant trait of free earlobes.

Therefore, the correct answer is that there is a 50% chance for the child to have attached earlobes.

Once a substance is separated from the blood supply by the nephron, it is excreted in the urine. true

Answers

it is true. hope this helps

What features show that homo erectus walked just like a modern human?

Answers

Answer: Double arches and adducted big toe.

Homo erectus had body proportions, a pelvic structure, arched feet, and leg musculature similar to modern humans, indicating they were well-adapted for bipedal walking. These features suggest that Homo erectus walked just like modern humans.

Features Indicating Homo Erectus Walked Like Modern Humans

Homo erectus showed several physical traits that suggest it walked just like modern humans:

Body Proportions: Homo erectus had body size and proportions similar to modern humans, with long legs and shorter arms, unlike earlier species like Homo habilis.Pelvis Structure: They had a broader pelvis, which is adapted for bipedal locomotion.Arched Feet: Their feet were arched, allowing for better balance and movement efficiency, akin to modern humans.Leg Musculature: Their long, powerfully muscled legs were suited for long-distance running and walking.Efficient Sweating: They likely had efficient sweating mechanisms and reduced body hair, adaptations that support an active lifestyle and prolonged physical activity.

These features collectively indicate that Homo erectus was well-adapted for efficient bipedal movement, similar to modern humans.

Menstrual flow results in the discharge of select one:
a. the follicle.
b. the corpus luteum.
c. the endometrial lining of the uterus.
d. surface cells from the vagina.
e. blood from the blood vessels on the outer surface of the uterus.

Answers

c. the endometrial lining of the uterus

Menstrual flow results in the discharge the endometrial lining of the uterus

Menstruation or menstrual cycle is a phenomenal occurrence in female humans. It occurs monthly for a certain period of the female's lifetime. Ideally, the ovary of a female produces one egg monthly.

In response to this, the uterine wall is lined by the help of hormones called estrogen and progesterone. This lining occurs in preparation of a fertilized egg, which will travel to the uterus and start developing as a fetus.

However, if fertilization (by a sperm cell) does not occur that month, the estrogen and progesterone levels start declining. This leads to the breakdown of the endometrial lining of the uterus and is discharged as blood via the vagina. This process is the result of menstrual flow.

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I'm not quite sure which is the right answer and I wanted to get a seconed opinion. Does anyone know the answer?

How is the global human population projected to change in the next 40 years?

A) decrease exponentially

B) increase exponentially

C) stop increasing

D) begin increasing

Answers

B. Increase exponentially

_____ form when muscle cells convert lactic acid to lactate.

Answers

For the answer to the question above, "hydrogen ions" form when muscle cells convert lactic acid to lactate.
this is the reason why we feel fatigue when exercising it is that we accumulate a compound called lactic acid. I hope this helps

___________ is a drug that is regularly used in veterinary medicine.

Answers

Ketamine is the drug regularly used in veterinary medicine.

reduction reactions during fatty acid synthesis utilize

Answers

Reduction reactions during fatty acid synthesis utilize NADPH.
Fatty acids are synthesized by the repetition of the following reactions: condensation, reduction, dehydration, and reduction.
Synthesis takes place in the cytosol and the enzymes included synthesis in this process are joined in a protein fatty acid synthase. During the process, the growing fatty acid chain is elongated by the sequential addition of two-carbon units derived from acetyl CoA. The reductant is NADPH.
Final answer:

During fatty acid synthesis, reduction reactions primarily utilize NADPH and ATP. Fatty acids are converted into fatty acyl CoA, transported into the mitochondria as fatty acyl carnitine, and then converted to acetyl CoA to enter the Krebs cycle for energy production.

Explanation:

Reduction reactions during fatty acid synthesis primarily utilize nicotinamide adenine dinucleotide phosphate (NADPH) and ATP. During the process of fatty acid synthesis, fatty acids are converted into fatty acyl CoA molecules in the cytoplasm. These fatty acyl CoA molecules combine with carnitine to form fatty acyl carnitine. This molecule is transported across the mitochondrial membrane, where it is then converted back into fatty acyl CoA and eventually into acetyl CoA. Acetyl CoA then enters the Krebs cycle, where it is used to produce energy or ATP.

Furthermore, when glucose levels are low, the body can break down triglycerides into 2C acetyl groups through the process of fatty acid oxidation. In this way, they are used as an energy source. The process of converting a fatty acid to fatty acyl carnitine is important as it allows for transport through the mitochondrial membranes.

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Describe the process of crossing over during prophase i and explain how genetic recombination occurs.

Answers

this is when crossing over occurs which is the exchange of genetic material across the synapse between either homologous chromosome.

The likely ancestors of tarsiers, monkeys, apes and humans are the:

Answers

The likely ancestors of tarsiers, monkeys, apes and humans are the omomyidae. 
Omomyidae is a family of early primates that radiated during the Eocene epoch between about 55 to 34 million years ago. They had the following characteristics: large orbits (eye sockets), shortened rostraand dental arcades, loss of anterior premolars, cheek teeth adapted for insectivorous or frugivorous diets, and relatively small body mass.

The likely ancestors of tarsiers, monkeys, apes, and humans are the omomyoids, which lived during the Eocene Epoch. Therefore, the correct option is: 4. omomyoids.

The likely ancestors of tarsiers, monkeys, apes, and humans are the omomyoids. These ancestral primates lived during the Eocene Epoch (about 56 to 34 million years ago) and are often considered a significant group in the evolutionary tree that led to modern elevated primates (anthropoids).

Omomyoids were small, nocturnal, arboreal creatures that exhibited many traits seen in the modern primates. These include grasping hands and feet, as well as forward-facing eyes that provide stereoscopic vision—traits beneficial for a life spent in the trees.

Key Characteristics of Omomyoids:

Small body sizeAdaptations for an arboreal lifestyleNocturnal habitsLarge eyes for enhanced night vision

Understanding these characteristics helps us appreciate the evolutionary steps leading from early primates to contemporary species, including humans.

How have humans increased their biotic potential and carrying capacity?

Answers

they have increased it with new medicine and research

Observe the life cycle of an insect called the rhino beetle. As a group, what are the three stages between the egg stage and the pupa stage called?

Answers

One is the larva, hope this helps

Answer:

Larva

Explanation:

After mating, female rhino beetle lay 50-100 eggs. On hatching, the eggs metamorphosed into larval or grub stage. This stage actually includes three sub-stages called instar. Instar stage referred to as L1, L2 and L3. During these sub-stages, larvae undergoes molting, it grows looks like maggots or larvae of other insects.

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