36. Breezes are named
A- for the feature they flow towards.
B- for the person who first observed them.
C- for the country they flow in.
D- for the feature they flow from.

Answers

Answer 1

The correct answer is - D- for the feature they blow from.

The breezes have all sorts of names, most of which tend to be derived from the feature they flow from. Lot of winds are named after the side of the world that they come from, so there's easterlies, westerlies, northern winds, southern winds. Some are maned after a river, as they flow along side it, like Vardarec. Some may be named after a mountain, or just have a name similar to a mountain, like mountain wind, forest wind, gorski vetrec.

Some winds, on the other hand, have names that describe their force, especially that goes for the strong ones, like bura along the Croatian coast on the Adriatic Sea.


Related Questions

Which division of the nervous system consists of neurons bringing messages from the senses to the central nervous system?

Answers

your answer is somatic

The division of the nervous system that consists of neurons bringing messages from the senses to the central nervous system is called the peripheral nervous system, and it is comprised of sensory neurons.

What does the body's peripheral nervous system do?

The peripheral nervous system can be divided into two main branches, such as the somatic nervous system, which controls voluntary movements, and the autonomic nervous system, which controls involuntary functions such as heart rate, blood pressure, etc., and it acts as the interface between the central nervous system and the sensory organs.

Hence, the division of the nervous system that consists of neurons bringing messages from the senses to the central nervous system is called the peripheral nervous system, and it is comprised of sensory neurons.

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Molecular phylogenies show all land plants are a monophyletic group. This suggests ________.

A) there were many different transitions from aquatic to terrestrial habitats
B) wind-pollinated plants arose first
C) land plants have undergone a diversification since they first colonized terrestrial habitats
D) there was a single transition from aquatic to terrestrial habitats

Answers

Answer:

D.  There was a single transition from aquatic to terrestrial habitats

Explanation:

Based on the molecular differences at the level of DNA sequence and inheritance, the molecular phylogenies show that all land plants are a monophyletic group. This is why it suggests a single transition from aquatic to terrestrial habitats occur.

If you have type A blood, what are your possible genotypes

Answers

If you have type A blood then you must have at least one copy of the A allele. However, you could also have two copies of the A allele within type A blood. The genotype, therefore, would be either AO (if they have 1 A allele) or AA (if they have 2 A alleles).

Where does the matter found in the body of an animal come from

Answers

the whole body is made out of matter

Most of a cell function cannot use energy directly from the food we eat . Describe how the energy from the food can be transferred to form later your cells can use?

Answers

Energy can be stored in fat cells for later use, there is quick energy(Oranges are a good example for this)  and slow energy(fatty foods take longer to break down)

In a certain plant, yellow leaves are dominant (Y) and red leaves are recessive (y). A=4 B=1 C=2 D=3

Answers

You're question is unclear, but I'd go with C.

A plant leaf is as complex as a modern chemical factory. True Or False?

Answers

The Answer Is True

I Hope This Helps!!

Final answer:

The statement is true, a plant leaf is as complex as a modern chemical factory because it carries out a variety of intricate functions including photosynthesis, transpiration and gas exchange.

Explanation:

The statement 'A plant leaf is as complex as a modern chemical factory' is indeed true. Plant leaves perform a variety of complex functions, most notably photosynthesis, which is the process that converts light energy, usually from the sun, into chemical energy that can be used to fuel the plant's activities. This is highly complex and involves a number of integrated chemical reactions. Beyond photosynthesis, leaves also play a vital role in other processes such as transpiration and gas exchange. Therefore, the complexity of a leaf can indeed be compared to a modern chemical factory due to the intricate processes it carries out.

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Predict what will happen to the model of the cell in this experiment

Answers

Do you meant the circled cell?

(Electron transport chain and ATP synthase)Which of the four complexes pump protons out of the mitochondrial matrix?complexes I, II, and IVcomplexes I, II, and IIIcomplexes I, III, and IVAll four complexes pump protons out of the mitochondrial matrix.

Answers

Answer:

All four complexes pump protons out of the mitochondrial matrix

Explanation:

What differs are the biochemical processed by which each complex pumps out the protons. Only ATP synthase pumps proton from the intermembrane space to the matrix. This is as it harnesses the proton motive force, created by the other complexes, to generate ATP molecules.

What was Anton van Leeuwenhoek's contribution in the development of cell theory?

Answers

He developed and improved the microscope. He was also the first to discover single-cell organisms that he called animalcules.

Answer: He invented the first practical microscopes which was used to see bacterial cell.

Explanation:

Microscopic study was done by Anton van Leeuwenhoek who was a draper and he had a great interest in microscope. This helped in mixing the lens and making a microscope which was used to see cell.

This microscope had a magnification of 270 x, which was of great help when visualizing such a small organism that was not seen by naked eyes.

Help Please ~ 20 points

Which of the statements regarding the nitrogen cycle is true?

Question 20 options:

Nitrogen fixation is the process where atmospheric nitrogen is converted by bacteria into biologically usable forms


Atmospheric nitrogen is absorbed through the leaves of plants


Denitrification occurs when a nitrogen containing compound is produced from nitrogen in the soil


Animals obtain nitrogen through the process of cellular respiration

Answers

Nitrogen fixation is the process where atmospheric nitrogen is converted by bacteria into biologically usable forms.

plant can not take nitrogen directly from the leaves.

Answer:

The correct answer would be the first option.

Nitrogen cycle refers to the cyclic movement of nitrogen in which it travels through different spheres in nature.

Different processes involves in a nitrogen cycle are: nitrogen fixation, ammonification, nitrification, and denitrification.

Nitrogen fixation refers to the process by which atmospheric nitrogen is converted into compounds that can be used by plants. It is achieved by three means: atmospheric processes (such as thundering), industrial, and biological processes.

Biological nitrogen fixation refers to the type of nitrogen fixation in which atmospheric nitrogen is converted into nitrates or nitrites through nitrogen-fixing microorganisms.

For example, Rhizobium (symbiotic nitrogen-fixing bacteria), Azotobacter (free-living nitrogen-fixing bacteria, et cetera.

The process of photosynthesis can be generally expressed by: carbon dioxide + water glucose + oxygen The process of cellular respiration can be generally expressed by: glucose + oxygen carbon dioxide + water What can be said about these two reactions?

Answers

The reactions is reversible. Photosynthesis is an anabolic reaction because it is building and cell respiration is an anabolic reaction because it is breaking down.
Final answer:

Photosynthesis and cellular respiration are reciprocal processes where the byproduct of one process is the necessary component for the other. Both processes utilize electron transport chains to transfer energy and occur in chloroplasts and mitochondria respectively.

Explanation:

The processes of photosynthesis and cellular respiration can essentially be viewed as reciprocal. In photosynthesis, light energy is absorbed to create glucose and oxygen from carbon dioxide and water. This process occurs in chloroplasts. Conversely in cellular respiration glucose and oxygen are metabolized to produce energy, with carbon dioxide and water as byproducts. This process occurs in the cytoplasm and mitochondria. The byproducts of each process become the necessary components for the other process, thus forming an efficient biological cycle. Both processes rely on electron transport chains to capture and transfer the necessary energy for these processes.

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The magnification of the signal from a water-soluble hormone is achieved through an increase in _______.

Answers

cAMP in the cytoplasm

Many cAMP can be generated as a second messenger to amplify the signal in response to hormone binding.

The chart below shows several species found in a pond ecosystem and the ph levels in which the species can survive. the normal ph of the pond is 6.5. if the ph of the pond fell to 5.0 due to acid rain, which of the species shown in the chart would die?

Answers

Final answer:

The species in the pond that cannot tolerate a pH as low as 5.0 would die out if the pH level dropped from 6.5 to 5.0 due to acid rain. A definitive answer depends on the specific data in the provided chart.

Explanation:

The species in the pond that could not survive a drop in pH level from 6.5 to 5.0 due to acid rain would be those that cannot tolerate a pH as low as 5.0. The specific species would be determined by the data in your given chart, which is not present in the question, so a definitive answer cannot be given. The pond ecosystem is delicate and each species has its own pH survival range. The species that have a survival pH range that does not extend to pH 5.0 will die out.

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How many copies of DNA does meiosis start with?

Answers

Final answer:

Meiosis starts with one diploid cell which has duplicated its DNA, creating two sets of each chromosome. It undergoes two rounds of cell divisions to produce four unique haploid gametes, each with half the original DNA content.

Explanation:

Meiosis begins with one diploid cell that contains two copies of each chromosome, one from each parent. After DNA replication occurs in the S phase of the cell cycle, meiosis proceeds through two cell divisions. The first division, meiosis I, separates homologous chromosomes, each made of two sister chromatids, into two daughter cells. These cells contain a mix of maternal and paternal chromosomes due to random assortment and the crossing over.

During the second meiotic division, or meiosis II, the sister chromatids are separated into four genetically unique haploid cells, each with half the DNA content of the original diploid cell. In humans with 46 chromosomes (23 pairs), the resulting cells from meiosis, which become gametes, each have 23 chromosomes. These are gametes such as sperm in males and oocytes in females.

The variability of the resulting gametes is vast, with the possibility of over eight million (223) different combinations from chromosome alignment alone, excluding additional genetic variation introduced by crossover.

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How is it possible for one of the species in a mimicry relationship not to be aware of the other?


How do population cycles impact trophic levels?

Answers

Final answer:

In a mimicry relationship, one species can mimic another without direct contact, influenced by predator selection pressures. Population cycles influence trophic levels, causing fluctuations throughout the ecosystem. These interactions can drive evolutionary changes and affect community dynamics.

Explanation:

In a mimicry relationship, it's possible for one species to be unaware of the other because mimicry involves one species evolving to share similar traits with another without direct interaction; this often occurs due to selective pressures from predators. For instance, if a harmless species resembles a poisonous one, predators might avoid it even if the two species never meet.

Population cycles impact trophic levels significantly. As the population of prey fluctuates, predator numbers also change in response due to availability of food. This can lead to cyclical patterns of abundance and scarcity that ripple through the trophic levels, influencing the entire ecosystem. Predators and prey can also drive each other's evolution through natural selection, each adapting to improve survival chances against the other.

Interspecific competition occurs when different species compete for the same resources, potentially leading to the exclusion or decline of one species, or to evolutionary changes such as niche differentiation. All these interactions can deeply affect the evolution of the species involved, shaping the structure and dynamics of communities and ecosystems.

Deep-brain stimulation has been reported to provide relief from

Answers

Deep-brain stimulation has been reported to provide relief from depression.

Deep brain stimulation (DBS) is a neurosurgical procedure used for the treatment of many diseases such as Parkinson's disease, essential tremor, epilepsy, obsessive–compulsive disorder, dystonia. It includes the placement of a medical device called a neurostimulator which sends electrical impulses, through electrodes, to specific targets in the brain.

It is good method to use for the treatment when disorder cannot be adequately controlled with medications, but it can be risky, e.g. because of the electrode misplacement.

Final answer:

Deep-brain stimulation is a neurosurgical procedure that involves implanting electrodes into specific areas of the brain to treat various neurological disorders. It has been reported to provide relief from conditions such as Parkinson's disease, essential tremor, dystonia, and obsessive-compulsive disorder.

Explanation:

Deep-brain stimulation is a neurosurgical procedure that involves implanting electrodes into specific areas of the brain to treat various neurological disorders. The electrodes deliver electrical impulses that help regulate abnormal brain activity and reduce symptoms.

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The evolution of similar insulating skin coverings such as fur, hair, and feathers in mammals and birds is a result of _____.

A) shared ancestry
B) convergent evolution
C) homology
D) evolutionary divergence

Answers

Final answer:

Similar insulating skin coverings like fur in mammals and feathers in birds have evolved due to convergent evolution, where species independently develop similar traits to adapt to comparable environmental conditions.

Explanation:

The evolution of similar insulating skin coverings such as fur, hair, and feathers in mammals and birds is a result of convergent evolution. This occurs when similar traits evolve independently in different species due to exposure to similar environmental conditions and selection pressures. For instance, both the arctic fox and the ptarmigan develop white coverings during winter to blend in with the snow and evade predators, despite one having fur and the other having feathers. This convergence is not due to a common ancestry; rather, it is the result of natural selection favoring characteristics that offer a survival advantage in similar environments.

Unele variante ale povestii explica motivul pentru care vrajitorul nu poatelua singur lampa,altele nu.Ofera si tu o explicatie.

Answers

In some versions of the story of Aladdin, the sorcerer cannot take the lamp from the cave by himself because of a magical enchantment placed upon it.

What is the enchantment?

This enchantment states that only the one who is truly worthy of the lamp's power can remove it from its resting place. In these versions, Aladdin is the one who is deemed worthy, as he is pure of heart and possesses a strong sense of justice. Therefore, he is able to retrieve the lamp without any difficulty, while the sorcerer, who is driven by greed and ambition, is unable to overcome the enchantment.

In other versions of the story, there is no explicit explanation for why the sorcerer cannot take the lamp by himself. Instead, it is simply implied that he is not powerful enough to overcome the magical forces guarding the lamp. This could be due to a lack of personal power, a failure to follow the correct instructions, or simply because he is not destined to possess the lamp's power.

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Translated question:

Some versions of the story explain the reason why the sorcerer can't take the lamp by himself, others don't. Give an explanation too.

Albino trees exist in nature, but they're rare. These trees contain a gene mutation that causes them to lack chlorophyll, so their leaves are white. In California, albino redwood trees are parasites. They survive off the energy from nearby redwood trees. Why do you think they need to use energy from other trees to survive?

Answers

Chlorophyll is what transfers sunlight into energy through photosynthesis, so without it these trees have to rely on energy from nearby trees as they can't make their own

Answer:Trees need chlorophyll to make energy. Because albino trees don’t have chlorophyll, they can’t create their own energy. So, they must take energy from other trees to survive.

Explanation:

With the rise of digital photography, courts have begun accepting digitally enhanced photographs as a matter of course.
True
False

Answers

The answer here would in fact be true.

Answer:

FALSE

Explanation:

Digitally ENHANCED photos are not allowed.

Digitally enhanced photos are images that have been specifically ALTERED for the purpose of making the subject of the photo and the photo itself look better than the camera and lighting by itself was able to capture.

What is the difference between diploid and haploid cells?

Diploid cells contain two chromosomes while haploid cells contain one.
Diploid cells are usually gametes.
Diploid cells have paired chromosomes while haploid cells have single chromosomes.
There is no difference.

Answers

The main difference between haploid cells and diploid cells is diploid cells have two complete sets of chromosomes, while haploid cells only have one complete set of chromosomes.

Answer: The correct answer is diploid cells contain two chromosomes while haploid cells contain one.

Explanation:

Ploidy is defined as the area of biology which gives us the number of chromosomes that are present in a cell.

There are two types of cells:

Diploid cells: These cells are defined as the cells which have two complete sets of chromosomes inside the cells.Haploid cells: These cells are defined as the cells which have only one set of chromosomes inside the cell.

Hence, the correct answer is diploid cells contain two chromosomes while haploid cells contain one.

Which of the following types of fungi are typically unicellular, lack heterokaryotic cells, and occasionally produce rhizoids? Select all correct choices.

basidiomycetes
zygomycetes
glomeromycetes
ascomycetes
chytrids

Answers

Answer:

Chytrids

Explanation:

chytrids are saphrotrophs, and have chitin cell walls and a posterior whiplash flagellum. They reproduce with zoospores that are capable of active movement through aqueous phases. For most members of chytrid group, asexual reproduction occurs through the release of these zoospores derived through mitosis. In some groups of chytrids, sexual reproduction is achieved through the fusion of isogametes. Chytrids are coenocytic with no distinction between individual cells. The filaments are long and tubular with a cytoplasm lining and large vacuole in the center. These single-celled organisms have branching hyphae with rhizoids.

Final answer:

Zygomycetes are the fungi that are usually unicellular, lack heterokaryotic cells, and sometimes produce rhizoids. They differ from others as they don't have a typical di-karyotic phase in their life cycle.

Explanation:

Among the given options, Zygomycetes are the type of fungi that are typically unicellular, lack heterokaryotic cells, and occasionally produce rhizoids. This group of fungi is different from others as it doesn't have a typical di-karyotic phase in their life cycle. Zygomycetes are an interesting group of fungi which often produce filamentous growths and reproduce sexually by forming a structure known as a zygospore.

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The duodenal ampulla receives secretions from the

Answers

Answer:

The pancreas, liver and gallbladder.

Explanation:

The pancreas, liver and gallbladder all deliver digestive secretions into the duodenum through an orifice known as the ampulla of Vater. This organ is located closely around the middle of the duodenum on the left side.

Final answer:

The duodenal ampulla receives secretions from the bile duct and the main pancreatic duct, which carry bile from the liver and pancreatic juice from the pancreas respectively.

Explanation:

The duodenal ampulla, also known as the hepatopancreatic ampulla or ampulla of Vater, receives secretions from the bile duct and the main pancreatic duct. The bile duct carries bile from the liver, while the pancreatic duct carries pancreatic juice from the pancreas. These two ducts join at the ampulla, which opens into the duodenum at a point called the major duodenal papilla. The flow of these secretions is regulated by the hepatopancreatic sphincter, also known as the sphincter of Oddi. Hence, the duodenal ampulla essentially plays a crucial role in the digestive system.

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Cholesterol serves several essential functions in mammalian cells. Which of the following is not influenced by cholesterol?
Select one:

a. membrane permeability
b. membrane fluidity
c. membrane rigidity
d. membrane thickness

Answers

The correct answer is: d. membrane thickness

Cholesterol is the second major lipid in the structure of the cell membrane (phospholipids are the major lipid components).

Cholesterol is rigid, so it gives the cell membrane extra support (strength and hardness) by immobilizing some of the lipid molecules around them. This rigidity makes it harder for small molecules to pass through the membrane, so it also has the influence on cell membrane’s permeability (the membrane becomes effective barrier to ions).

Cell membrane’s fluidity is also under the influence of the cholesterol which helps generate some extra space between the lipids allowing them to move freely throughout the membrane.

Oxygen is the final electron acceptor for cellular respiration. What is the final electron acceptor in the light reactions of photosynthesis?

Answers

Final answer:

The final electron acceptor in the light reactions of photosynthesis is NADP+ which is reduced to NADPH, used later in the creation of glucose.

Explanation:

In the light reactions of photosynthesis, the final electron acceptor is a molecule called NADP+ (Nicotinamide adenine dinucleotide phosphate). Light energy absorbed by chlorophyll and other photosynthetic pigments initiates a series of electron transfer reactions resulting in the reduction of NADP+ to NADPH. This molecule goes on to be used in the Calvin cycle to help create glucose and other carbohydrates.

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The final electron acceptor in the light reactions of photosynthesis is NADP+ (Nicotinamide Adenine Dinucleotide Phosphate), which is reduced to NADPH.

In the light reactions of photosynthesis, light energy is absorbed by chlorophyll and other pigments in the thylakoid membranes of chloroplasts. This energy is used to split water molecules, releasing oxygen and generating electrons. These electrons are then passed through a series of protein complexes in the electron transport chain, ultimately reaching photosystem I (PSI).

At PSI, electrons are transferred to NADP+ and reduce it to form NADPH, which is a high-energy molecule used in the Calvin cycle, the second stage of photosynthesis, to convert carbon dioxide into glucose and other organic compounds. NADP+ serves as the final electron acceptor in the light reactions of photosynthesis, just as oxygen is the final electron acceptor in cellular respiration.

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Which has lower pH, a lake river or wetland? Why?

Answers

pH of lake = between 7.5 and 8.5

pH of river = around 7.4

pH of wetland = Below 7

Wetland is the answer

Which of the following statements about transmembrane proteins is correct?They usually have one or more helical regions spanning the membrane bilayer.They are always inserted with the amino terminus on the lumenal side and the carboxyl terminus in the cytosol.They are always inserted with the carboxyl terminus on the lumenal side and the amino terminus in the cytosol.The signal sequences are always cleaved off.They can cross the membrane only once.

Answers

The correct answer is: They usually have one or more helical regions spanning the membrane bilayer

Transmembrane proteins are type of integral proteins meaning that they are permanently attached to biological membrane. Transmembrane proteins span through the plasma membrane so most of their structure is hydrophobic.

The major role of these proteins is transport role: they act as a channels that undergo conformational change in order to  move a substance through the membrane.

Classified by their structure they can be put into two types: alpha helical and beta barrels.

Final answer:

Transmembrane proteins usually have helical regions spanning the membrane bilayer, their orientation can vary, and they can cross the membrane multiple times.

Explanation:

The correct statement about transmembrane proteins is that they usually have one or more helical regions spanning the membrane bilayer. This helical region, also known as a transmembrane domain, allows the protein to cross the lipid bilayer of the cell membrane. While their orientation can vary, transmembrane proteins can have their amino terminus (N-terminus) on either the lumenal side or the cytosolic side of the membrane, and the carboxyl terminus (C-terminus) on the opposite side. Signal sequences in transmembrane proteins are not always cleaved off and can serve various functions. Finally, transmembrane proteins can cross the membrane multiple times, depending on their structure and function.

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on the surface of the earth, the force of gravity acting on one kilogram is: _________ newton’s

Answers

♫ - - - - - - - - - - - - - - - ~Hello There!~ - - - - - - - - - - - - - - - ♫

It would be 9.81 Newtons.

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If anna had a child with a man with sickle cell anemia, predict whether that child would also have sickle cell anemia. draw out a pedigree to help explain your reasoning and describe any information you used to make your prediction..

Answers

The child has a 100% chance of having Sickle Cell Disease

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