According to the dichotomous key, the organism pictured would be a member of the kingdom

Answers

Answer 1
we're are the pictures.
Answer 2

Answer:

It's a Gibbon or orangutan

Explanation:

I just assume because I  answered a question like this if it's wrong I'm sorry...


Related Questions

Aristo was riding in a car and noticed a pond that was covered in algal blooms. Which of these other features in the landscape could be the reason for the high levels of phosphorus?

many cars

cow pasture

solar panels

forest

Answers

Cow pasture :) plz send me a message if u need more help

The algal blooms are a result of the increased levels of the phosphorus in the water. The largest source of the phosphorus in the water bodies is the runoff from the grasslands and pastures. The cow pasture near the pond that Aristo visited is the source of the phosphorus in the pond, which lead to the harmful algal blooms in the pond. The cow manure is rich in phosphorus, which runs off to the nearby water bodies.

Hence, the answer is 'cow pastures'.

Was the bone marrow yellow, red, green or blue?

Answers

Well, there is red bone marrow and yellow bone marrow. Red consists mostly of hemopoietic stem cells which produce red blood cells.  Yellow bone marrow is yellow due to the high quantity of fat. As you age, yellow bone marrow becomes more prominent.

You are a population geneticist and you have recently visited a remote pacific island where you have discovered a race of giant purple-skinned, seven-toed, three-horned dragons. in examining the new race you have discovered that a small number of the dragons have only six toes as opposed to seven and it seems to be genetically inherited trait. after a population survey, you have found that in a population of 1,378 dragons, 174 of them have only six toes. assuming the six-toed organisms are carrying a recessive trait, calculate the gene frequencies and the percentage of homozygous dominant, heterozygous, and recessive individuals on the island

Answers

Use the Hardy Weinburg equation of allelic frequency.

P2+2pq+q2=1

174/1378 = 0.126 = q2

Therefore q2 = 0.126; q = 0.355

If q = 0.355 and we understand that p + q = 1, then

P = 1 – 0.355 = 0.645

To find homozygous dominant population (p2);

(0.645)2 x 1378 = 0.416 x 1378 = 573

Heterozygous popualiton (2pq);

(2 x 0.645 x 0.355) x 1378 = 0.458 x 1378=  631

Recessive indviduals (q2) =  174


Explain how this simulation does and does not represent real life

Answers

The simulation does and does not represent real life because simualtions may represent an input of the surrounding environment that helps to produce a concomitant response by cells but may also involve an abstract model that does not necessarily apply to real life.

What is the real value of simulation in life?

The real value of simulation in real life is the fact that this helps us to model the responses of an organism to the surrounding enviroment, but this modeling may not present a real response in biological terms.

Therefore, with this data, we can see that simulation may model cell responses in organisms.

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Diamond and graphite are both polymorphs of ________

Answers

Diamond and graphite are both polymorphs of carbon. Polymorphism or allotrophy involves the existence of an element in more than one crystalline form, but similar physical state. An example of polymorphism is of carbon. The element carbon can exist in many forms, two such forms are graphite and diamond. Diamond can be converted into graphite, at a phase change point or transition point.

Answer: The correct answer for the blank is -

Carbon.

Explanation:

Polymorphs can be described as two or more minerals that have the same chemical composition or made up of same chemical but have difference in their atomic arrangement and crystalline structure.

Example- Diamond and Graphite both are the crystalline form of carbon as both are formed of pure carbon.

In Diamond, the atoms are packed with one another and also linked to several other carbon atoms as compared to Graphite, where there are weak bonds between the layers.

~migration of birds into a new habitat ~pollen blowing in from plants in a far-away habitat ~fish swimming in to a new habitat in a river ~seeds being carried to an island on the ocean waves The four examples listed above could all be responsible in the change in a gene pool, also called

Answers

Microevolution is the word for a change in a gene pool.

As the Sun moves throughout the day, some plants can follow it. This is called _____. solar flexing solar tracking solar watching

Answers

I do believe the answer would be B. solar tracking

Answer:

Solar tracking

Explanation:

Many plants have the ability to move during the day and stay oriented towards the sun's rays. This phenomenon is called solar tracking.

One of the best known plants for solar tracking is the sunflower, which while the sun moves, so does the sunflower so that its petals remain perpendicular to the sun's rays.

Solar tracking is also used in different systems, such as solar cells  to get greater efficiency.

Two genes located on separate autosomes determine flower color and shape. the gene for flower color exhibits incomplete dominance, where the color can be red, pink (the heterozygote), or white. the gene for flower shape leads to personate (dominant) or peloric (recessive) flower shape. what are the p1 and f1 genotypes for this cross?

Answers

Hhshshshhsshshshsjhsjjs

The color and shape of the flowers, as well as the height of the plant, are determined by two gene pairs on different autosomes. The color of the first pair can be red, pink (the heterozygote), or white, and there is partial dominance present.

What are the result of incomplete dominance?

The dominant or recessive peloric flower shape results from the second pair of genes, whilst the dominant tall trait or the recessive dwarf phenotype is produced by the third gene pair.

The phenotype of a heterozygous dominant person is a combination of dominant and recessive traits when none of the elements of a gene are dominant. We bring up to this as incomplete dominance.

Therefore, White, peloric, and dwarf homozygous plants are crossed with red, personate, and tall homozygous plants.

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What is the greatest risk to earths water supply?

Answers

Final answer:

The greatest risk to Earth's water supply is a combination of pollution, over-use, and limited availability. Pollution from various sources threatens water quality, while over-use and limited freshwater sources contribute to a limited supply. Uneven distribution of precipitation also leads to water shortages in certain areas.

Explanation:

The greatest risk to Earth's water supply is a combination of factors including pollution, over-use, and limited availability. Pollution from agriculture, industry, cities, and mining threatens global water quality. Over-use and pollution of freshwater sources contribute to the limited supply of clean water that people depend on. Additionally, precipitation is unevenly distributed around the globe, leading to water shortages in arid climates and densely populated areas.

The tree includes the most recent common ancestor of all living species of bears (branch point 1). what does this tell you about this phylogenetic tree? the tree includes the most recent common ancestor of all living species of bears (branch point 1). what does this tell you about this phylogenetic tree? this phylogenetic tree is rooted. the ursidae family is a paraphyletic group. the ursidae family is a polyphyletic group. this phylogenetic tree contains homoplasies.

Answers

Final answer:

The phylogenetic tree in question is rooted and represents all bear species tracing back to their common ancestor, making the Ursidae family a monophyletic group.

Explanation:

The inclusion of the most recent common ancestor of all living species of bears (branch point 1) in a phylogenetic tree suggests that this tree is rooted.

A rooted tree means there is a single ancestral taxon at its base, from which all organisms in the tree have descended. In the context of bears, since the tree includes the most recent common ancestor, it indicates that the tree represents all the bear species and traces back to their common origin.

Hence, the Ursidae family (family of bears) would be considered a monophyletic group, meaning that it includes an ancestor and all of its descendants, as opposed to being a paraphyletic or polyphyletic group.

A paraphyletic group includes a common ancestor and some but not all of its descendants, while a polyphyletic group does not include the most recent common ancestor of the included organisms.

Which of the following is not conducive to new approaches to wildlife conservation and management?
A) historical range of abundance
B) estimation of the probability of extinction based on historical numbers
C) use of age-structure information
D) better fishing techniques and fishing equipment
E) better use of harvests

Answers

I think it might be D) better fishing techniques and fishing equipment

Answer:

D

Explanation:

An animal with a saturated fatty acid to polyunsaturated fatty acid ratio of _______ will have the best hibernation performance.

Answers

The answer is less than 1:5, but the typical western diet is now between 1:20 and 1:50. When a fatty acid is described as being saturated, it means that it contains only single bonds between its carbon atoms, this means the source is high in saturated fats and intake should be limited and should be monitored.

The map shows an island arc in Alaska named the Aleutian Arc. What does the arc suggest about its surrounding geographic region?

*There is more than one answer*

Answers

We see that this is a region near the continents, so it is probable that there is the boundary of a tectonic plates around there. Since there are islands there, it is quite probable that there is a subduction zone near them which means that the oceanic crust is going below the continental one and the continental is slowly elevated. This also shows that the boundary is convergent, since transform boundaries do not lead to elevation. Near convergent boundaries, there are frequently volcanoes and shallow earthquakes. Finally, the climate near Alaska is cold and this does not depend on whether islands are near a boundary or not. So, 2 4 and 5 are correct.

​____ allow bacteria to join together to transfer genes.

Answers

The answer is pilus. This structure joins two bacteria of same species and allow exchange of genetic material in a process called horizontal gene transfer (conjugation). The plasmid of one of the bacteria (the mobile plasmid) is nicked once and the strand moves through the pillus to the other bacteria. It combines with the other plasmid or chromosome to for recombinant dna.

How frequent is school-site violence? common. relatively rare?

Answers

i would actually say quite a few has happened in the last 4 years alone.

The Chlorophyta are important _____. for providing oxygen to the atmosphere for depositing diatomic residues as a source of iodine

Answers

The chlorophyta are important FOR PROVIDING OXYGEN TO THE ATMOSPHERE.
Chlorophyta refers to the division of lower plants, which is made up of green algae. The plants are aquatic and they found majorly in fresh water and marine habitats, although some are found living on land. Chlorophyta serve as an important source of food to marine organisms and they play a very significant role in contributing to the world's supply of oxygen through the process of photosynthesis.

What is the best estimate of the frequency of the wave shown below?
WavesAQ4
A. 0.40 Hz
B. 0.85 Hz
C. 1.25 Hz
D. 2.50 Hz

Answers

The best estimate of the frequency of the wave WavesAQ4 will be 2.50 Hz. The correct option is D.

What is frequency?

In physics, frequency refers to the number of waves that pass through a fixed point in one unit of time.

It also describes the number of cycles or vibrations experienced by a body in periodic motion in one unit of time.

The number of waves that pass through a fixed point in a given amount of time is referred to as the wave frequency.

The hertz (Hz) is the SI unit for wave frequency, and one hertz equals one wave passing a fixed point in one second.

The frequency of the wave WavesAQ4 is best estimated to be 2.50 Hz.

Thus, the correct option is D.

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Which steroid hormone(s) would not be produced if you blocked the activity of p450scc?

Answers

P450scc or cholesterol side chain cleavage enzyme is an enzyme that converts cholesterol into pregnenolone (the precursor for steroids). The kinds of steroid hormones are mineralocorticoids (i.e. aldosterone) glucocorticoids (i.e. cortisol), and sex steroids (i.e. testosterone, estrogen). In the event where P450scc is blocked, then there will be no production of mineralocorticoids, glucocorticoids, and sex steroids. There will be no production of aldosterone, cortisol, estradiol, testosterone, and progesterone. This disease is called Lipoid Congenital Adrenal Hyperplasia.

During embryological development, the anus forms before the mouth in ___

Answers

the answer would be humans

Final answer:

In deuterostomes, the anus forms before the mouth during embryological development, with the blastopore becoming the anus and the mouth forming at the opposite end.

Explanation:

During embryological development, the anus forms before the mouth in deuterostomes. This group includes organisms such as chordates and echinoderms. The fate of the first opening in the early embryo, the blastopore, is what classifies an organism as a protostome or a deuterostome. In deuterostomes, the blastopore eventually becomes the anus, with the mouth forming at the opposite end, a process known as enterocoely. This contrasts with protostomes, where the blastopore develops into the mouth, and the body cavity forms by splitting the mesodermal mass in a process called schizocoely.

The distinction between these two forms of development is significant, reflecting broader differences in the embryogenesis of these organisms. Although there is ongoing debate and research on the specifics of mouth and anus formation in embryonic development, the general pattern of anus before mouth development in deuterostomes remains a key characteristic of these animals.

Consider this animal cell. Which organelle is responsible for producing the energy for cellular processes?

Answers

The Mitochondria is well known as the "power-houses" of animal cells.

What do ect, vagus nerve stimulation, and transcranial magnetic stimulation have in common?

Answers

I believe that the common features of the three is that they usually give a suggestion that brain stimulation is effective when treating severe forms of depression. These methods are usually used after other methods have been tried and failed. They involve the stimulation of the brain.
Final answer:

Ect, vagus nerve stimulation, and transcranial magnetic stimulation are all techniques used to treat disorders related to the brain.

Explanation:

Ect, vagus nerve stimulation, and transcranial magnetic stimulation (TMS) are all techniques used to treat certain disorders related to the brain.

Ect, or electroconvulsive therapy, involves using an electrical current to induce seizures in order to alleviate symptoms of severe depression. Vagus nerve stimulation involves the use of electrical impulses to stimulate the vagus nerve, which can help treat epilepsy and depression. Transcranial magnetic stimulation (TMS) uses magnetic fields to stimulate nerve cells in the brain and is used to improve symptoms of depression.

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Match the following terms and definitions. 1. the part of the neuron that carries the cell's message away from the cell cell body 2. the part of the neuron that contains the nucleus and cytoplasm muscle fiber 3. point of skeletal muscle attachment on the body part the muscle moves synapse 4. a very long, contracting cell that makes up the muscles of our body phagocytosis 5. the process of a cell engulfing its food; literally, "cell eating" insertion 6. the junction between two nerve cells axon

Answers

1.axon
2. cell body
3. insertion
4. muscle fiber
5. phagocytosis
6. synapse 

100% your welcome lol 

Answer:

1. Axon refers to the section of the neuron, which conducts the message of the cell away from the cell body.  

2. The cell body refers to the part of the neuron, which comprises the cytoplasm and the nucleus.  

3. Insertion refers to the point of the attachment of the skeletal muscle on the part of the body where the movement of muscles takes place.  

4. Muscle fiber refers to a very lengthy, contracting cell, which forms the muscles of the body.  

5. Phagocytosis refers to the procedure in which a cell engulfs its food, also termed as cell eating.  

6. The junction between the two nerve cells is termed as a synapse.  

A single strand of DNA helix consists of 100 nitrogenous base pairs. On one strand, 36 of the bases are adenine and 24 are cytosine. For the complimentary strand of DNA, which would complete the proper base pairing?

Answers

Hello!

For the complementary strand of DNA, 36 Thymine bases and 24 Guanine bases would complete the proper base pairing. 

This is given by the concept of complementarity. A base in DNA has complementarity with only one other base. This complementarity is produced by hydrogen bond interactions.

For DNA, Adenine couples with Thymine and Cytosine couples with Guanine. So the 36 adenine bases will couple with 35 thymine bases, and so on. 

Have a nice day! 

36 guanine

36 thymine

24 cytosine

24 thymine

36 thymine is the answer :))

A pump is not used to raise groundwater to the surface in areas where artesian wells are located because the water in artesian wells is

Answers

In Artesian wells the water is trapped in a porous material such as sand and then it flows, I guess

Answer: Under high pressure

Explanation:

Artesian well is constructed whenever there is high pressure in the aquifer.An aquifer is defined as a geologic layer which has the ability to hold water.In artesian well, the ground water reaches to the surface on its own as the water in this area is under high pressure. Thus, we do not need a pump to bring up the water to the surface in such areas and the well that is constructed is the artesian well.

A temperature 2 to 4 degrees lower than normal body temperature is critical for the production sperm. This temperature is maintained by what structure in the male's body ?

Answers

Final answer:

The scrotum is responsible for maintaining a temperature that is 2 to 4 degrees Celsius lower than normal body temperature, which is crucial for sperm production. It achieves this through muscle contractions that adjust the position of the testes relative to the body, ensuring a temperature conducive to spermatogenesis.

Explanation:

A structure called the scrotum is responsible for maintaining a temperature that is 2 to 4 degrees Celsius lower than the normal body temperature, which is critical for the production of sperm. The scrotum is a skin-covered, highly pigmented, muscular sac that extends from the body behind the reproductive organ. Its main function is to house the testes and maintain an optimal temperature for spermatogenesis, or sperm production, through the contraction and relaxation of its smooth muscles.

The scrotum regulates its internal temperature by responding to external temperature changes. When the internal temperature of the scrotum is too low, the smooth muscles within the scrotal wall contract to pull the testes closer to the body for warmth. Conversely, when it is too warm, the scrotum relaxes and allows the testes to hang further from the body, helping cool them down.

This mechanism is essential because sperm are immobile at higher temperatures and require a slightly cooler environment to remain viable and motile. Inability of the testes to maintain this cooler temperature can lead to infertility, as viable sperm production is compromised.

This temperature is maintained by scrotum structure in the male's body.

The temperature required for optimal sperm production in males is typically a few degrees lower than normal body temperature. This lower temperature is maintained by a specific structure in the male reproductive system known as the scrotum.

The scrotum is a pouch of skin and muscle located outside the body cavity, hanging below the pelvic region. Its primary function is to regulate the temperature of the testes, where sperm production (spermatogenesis) occurs. The lower temperature provided by the scrotum is crucial for the proper development and maturation of sperm cells. If the testes were located within the warmer environment of the body, sperm production could be adversely affected.

The liver is important in carbohydrate metabolism as it processes the monosaccharides galactose and fructose into glucose. what happens to this glucose once it is done being processed in the liver? check all that apply.

Answers

Once glucose is done being processed in the liver, they are likely to do the following;

-          Store glycogen

-          Produce fat

It is because when there is an excess glucose, it is removed from the blood converting the rest into glycogen in which is being storied and that it also produces fat after it has been processed in the liver.

Once glucose is processed in the liver, it can be used immediately for energy, stored as glycogen, or converted into fatty acids for long-term storage in the form of triglycerides.

Glucose Metabolism in the Liver

After galactose and fructose are processed in the liver, the resulting glucose can have several fates. The liver is responsible for maintaining blood glucose levels within a normal range. The glucose can either be:

Released into the bloodstream to be used by various tissues in the body as an immediate source of energy.Stored as glycogen in hepatocytes the principle storage form of glucose in the body to be broken down and released into the bloodstream when needed.Converted into fatty acids through the process of de novo lipogenesis, which may lead to the production of triglycerides and can contribute to fat accumulation in the liver.

This versatility is essential in the regulation of energy metabolism, with the liver acting as a critical hub for nutrient modification, transport, and storage.

For the percentage of
time has life existed on earth round to the nearest whole number

Answers

for about 83 percent of time

The age of the Earth is considered as 4.6 billion years. Before the oxygen appeared, the oldest life form was considered to be found around 3.8 billion years ago was the oldest microbe capable of growing and dividing. The appearance of life form is considered to have a relationship with the discovery of the strong absorbing Ultraviolet rays which is in turn related to the hydrocarbon presence.

Taking the above considerations, the percentage of time has life existed on Earth is

{3.8/4.6}*100=82.6 or approximately 83% ,

[tex] \frac{3.8}{4.6}*100=82.6% [/tex]

How does the process of photosynthesis create food?

(A) Cells split into two new cells with the identical genetic makeup.
(B) Chloroplasts use carbon dioxide and water to create glucose.
(C) Mitochondria use oxygen to break down glucose and convert it to ATP.
(D) Waste passes through the cell membrane and leaves the cell.

Answers

Answer:

Option B (Chloroplasts use carbon dioxide and water to create glucose)

Explanation:

Chloroplast are known to be the "GREEN SOLAR POWER TRANSFORMERS". These are very small organelles found in the cells of plants. These organelles trap the sun light as energy source to form oxygen and glucose by utilizing Carbon dioxide and water.

The process of photosynthesis makes food when chloroplasts use carbon dioxide and water to make glucose. Therefore, the correct option is B.

The process by which plants, algae and some microorganisms convert solar light energy into chemical energy in the form of glucose is called photosynthesis. This activity occurs in the chloroplast, which contains chlorophyll as a pigment.

During photosynthesis, chlorophyll absorbs light energy, which is used to split water molecules into hydrogen and oxygen. The hydrogen is then used to carry out a series of chemical processes that convert carbon dioxide (CO2) into glucose (C6H12O6). The main source of energy for the organism is glucose, which also serves as a building block for more complex organic molecules such as cellulose and starch.

Therefore, the correct option is B.

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An advantage of innate immunity is ________. an advantage of innate immunity is ________. the specificity of its individual cells which specialize in the removal on one type of antigen its barriers that prevent pathogens from entering into the body the use of antibodies to cause cell lysis and kill invading cells the numerous steps in the activation of its cells that can prevent autoimmune disease

Answers

An advantage of innate immunity is ITS BARRIERS THAT PREVENT PATHOGENS FROM ENTERING INTO THE BODY.
The innate immune system is a sub-component of the humans' immune system; it is made up of cells and mechanisms that prevent the body from been invaded by infectious agents. The innate immune system is the first line of defense of the body when a pathogen try to infect the body, the system is normally activated by the presence of pathogens or their secretions. The innate immune system is made up of two basic components:
1. physical barriers such as skin, respiratory tract, gastrointestinal tract, cilia, eyelashes, etc.
2. Defense mechanisms such as secretions, bile, mucous, gastric acid, tears, sweat, saliva, etc.
Final answer:

Innate immunity is advantageous for its broad-spectrum defenses, such as physical and internal barriers, against pathogens. Adaptive immunity, which is more sophisticated, targets specific pathogens and uses antibodies to kill invading cells which can prevent autoimmune disease.

Explanation:

An advantage of innate immunity is its barriers that prevent pathogens from entering into the body. Innate immunity, accompanied by adaptive immunity, works as the first line of defense against harmful microbes and substances. This system includes physical barriers like skin and mucous membranes, and internal defenses like inflammation and fever. It is not specific to any particular pathogen and does not have immune memory but forms a crucial part of the body's defense mechanism.

On the other hand, adaptive immunity has the specificity of its individual cells which specialize in the removal of one type of antigen and the use of antibodies to cause cell lysis, killing invading cells. The numerous steps in the activation of its cells can prevent autoimmune disease, effectively providing another form of immunity that complements innate immunity.

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Process that leads to increased affinity of antibodies for a protein antigen as a humoral response progresses through somatic mutation of ig genes to selective survival of b cells is called

Answers

The answer is affinity maturation. The process allows the B cells and humoral response to be more effective against the same antigen with every secondary infections.
Affinity maturation is the result of somatic hypermutation of the genes that code for variable region (Fab) of immunoglobulins. This increases the variability of the B cell receptors hence increased probability for affinity of Ig to the antigen. The Ig variant that is effective against the antigen will be selected and reproduced by memory B cell during secondary infections.

Answer: Affinity maturation

 Affinity maturation is the process that leads to increased affinity of antibodies for a protein antigen as humoral response progresses. B cell maturation in the germinal center is a result of somatic mutation of immunoglobulin genes, which provide the molecular basis for the selective survival of B cells producing the highest affinity antibodies. These B cells are thought to have a competitive advantage when antigen becomes limiting in germinal centers.

 

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