Look at the unit pIr and its distribution. What size crater would a structure such as this be associated with?
Group of answer choices

Answers

Answer 1

The size in which a crater would be associated with is Multi ring > 300 km and is therefore denoted as option E.

What is a Crater?

This is referred to as a large bowl-shaped cavity in the ground or on a celestial object, typically one caused by an explosion or the impact of a meteorite.

It is usually caused by a large explosion which therefore means thst the impact is huge. It can be of a big size such as being greater than 300km in the form of a multi ring and is therefore the reason why it was chosen as the correct choice.

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The full question:

Look at the unit pIr and its distribution. What size crater would a structure such as this be associated with?

A. Simple < 20 km.

B. Terraces > 20 km.

C. Central peaks > 50 km.

D. Peak rings > 200 km.

E. Multi ring > 300 km


Related Questions

Pick the letter of the term or phrase that best matches the description.
varieties developed by combining genetic material from other populations
answer choices

a. hybrids

b. ecotourism

c. biodiversity

d. genetic diversity

e. keystone species

Answers

Option A. Hybrids.Hybrids are varieties of organisms that result from the combination of genetic material from different populations or species.

In agriculture, for example, hybrid crops are often developed by crossbreeding different strains to create plants with desirable traits such as disease resistance, higher yield, or better taste.Hybrids can occur naturally or be intentionally created through controlled breeding. When two different species interbreed, their offspring are often sterile and unable to reproduce, such as the mule which is the result of the cross between a horse and a donkey. However, when two different varieties or subspecies of the same species are crossed, their offspring can often reproduce, and this is how hybrid crops are developed.Hybrids are an important source of genetic diversity and can have advantages over their parent populations, such as increased resilience to environmental stressors or improved growth characteristics. However, hybrids can also pose risks to the parent populations if they interbreed and dilute their genetic diversity.

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In which location is dense fog most prevalent?
a. along valley floors flanked by hilly forests
b. in coastal margins near the Great Lakes and Appalachian Mountains
c. on mountains peaks where cool air rises and condenses
d. in the middle of large, flat continental margins

Answers

b. in coastal margins near the Great Lakes and Appalachian Mountains. Fog that reduces vision to 0.25 miles or less is referred to as heavy fog.

In the Midwest, dense fog is most common between midnight and mid-morning from October through March. A frequent phenomenon in the Midwest is fog. When the soil is damp from prior rainfall, valley fog develops. The sun's energy leaves the earth when the sky clears, allowing the temperature to drop to or near the dew point. This type of dense deep fog is occasionally referred to as tule fog. Hilltops are less prone to radiation fog than valleys are. When warm rain falls into a cool layer of surface air, advection fog frequently results.

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What is a carbohydrate with one sugar and two sugar units called?

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A carbohydrate with one sugar unit is called a monosaccharide, while a carbohydrate with two sugar units is called a disaccharide.

Conversely, disaccharides are made up of two monosaccharide units joined by a glycosidic bond. Examples of disaccharides include sucrose, lactose, and maltose. Sucrose is commonly known as table sugar and comprises glucose and fructose. Lactose is found in milk and is made up of glucose and galactose. Maltose is formed during the breakdown of starch and comprises two glucose units.

Carbohydrates play a crucial role in the human diet and are a major energy source for the body. They can be found in various foods, including fruits, vegetables, grains, and dairy products. However, it's important to consume them in moderation, as excess consumption can lead to weight gain and other health problems.

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Review the anatomical organization of skeletal muscle. Correctly label each of the structures. 1.Muscle fiber. 2.Endomysium. 3.Tendon. 4.Fascicle. 5.Blood vessel 6.Perimysium. 7.Epimysium.

Answers

1. Muscle fiber
2. Endomysium
3. Tendon
4. Fascicle
5. Blood vessel
6. Perimysium
7. Epimysium

What is Epimysium?

Epimysium is a layer of dense fibrous connective tissue that covers the entire muscle. It is made up of collagen fibers that are arranged in a parallel fashion. The epimysium also helps to anchor the muscle to tendons and other structures, while also providing a protective sheath that helps to reduce friction between the muscle and surrounding structures. Its fibers also act as a barrier to prevent the spread of infection. The epimysium also helps to provide the muscle with better blood supply and nutrient delivery.

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The origin of a new plant species by hybridization coupled with nondisjunction is an example ofA) allopatric speciation.B) sympatric speciation.C) autopolyploidy.D) heterochrony.E) habitat selection

Answers

The beginning of another plant species by hybridization, combined with mishaps during cell division, is an illustration of autopolyploidy. The correct answer is (C).

Speciation by hybridization: For instance, when Loren Rieseberg and collaborators reproduced the phylogeny of a few sunflower animal categories, they found that few species had been shaped by preparations between different species.

Parent plants produce posterity that is polyploid. Consequently, the posterity lives in a similar climate as their folks, however, are reproductively disconnected.

A potential illustration of sympatric speciation is the apple slimy parasite, a bug that lays its eggs inside the product of an apple, making it decay. As the apple tumbles from the tree, the slimy parasites dive into the ground prior to arising as flies a while later.

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what is competition definition biology

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Competition is the interaction of two species or groups of organisms when they both need a resource that is in short supply.

More broadly, competition can be described as the direct or indirect contact of organisms that results in a change in fitness when the organisms share a resource. Competition is most commonly thought of as the interaction of individuals that compete for a common resource that is in limited supply. For example, trees in the forest grow taller to compete for sunlight.

Competition between species may result in the decline of both species or the extinction of one of the species. Yet, environmental changes or evolution, which might alter the laws of the game, can frequently halt this process.

A sort of competition that depends on density is intraspecific competition. Contrary to "inter," which indicates between species, "intra" refers to within a species.

Interspecific competition is the term used to describe competition between individuals of different species. As long as two species are competing for the same resource, they can engage in this behavior. Interspecific competition is an intriguing example in coastal marine ecosystems.

There are many more instances of direct competition than the two cases mentioned above. Any time two or more animals engage in physical conflict or a symbolic encounter, there is typically some kind of resource rivalry going on.

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what does the esophagus do in the digestive system

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The esophagus is a muscular tube that connects the mouth to the stomach and plays an important role in the digestive system.

When we swallow food, it is pushed by the tongue towards the back of the mouth and into the opening of the esophagus.The esophagus then uses a series of muscular contractions, known as peristalsis, to propel the food down towards the stomach.

The muscles of the esophagus contract in a coordinated way to create a wave-like motion that pushes the food forward. The esophagus also has a ring-like muscle at its lower end, called the lower esophageal sphincter, which relaxes to allow food to enter the stomach and then contracts to prevent stomach acid and contents from flowing back up into the esophagus.

The esophagus does not play a role in the breakdown of food or the absorption of nutrients, but it is an important part of the digestive system because it helps move food from the mouth to the stomach for further digestion and processing.

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How do introns contribute to the regulation of gene expression

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Introns can increase transcript levels by affecting the rate of transcription, nuclear export, and transcript stability. Moreover, introns can also increase the efficiency of mRNA translation. This review discusses the current knowledge about these processes.

all living things require energy to survive. which cell organelle is responsible for generating chemical energy for the cell?a. vacuoles b. chloroplastc. mitochondriad. golgi bodies

Answers

Answer:

Mitochondria

Explanation:

creates atp

The mitochondria is responsible for generating chemical energy for the cell because it is the powerhouse of the cell

One or more extra whole sets of chromosomes is called ____________ , which often is beneficial in plants.

Answers

One or more extra whole sets of chromosomes is called aneuploidy.

What is the role of proteasome in cell?

Answers

Answer:

Протеасома — це великий білковий комплекс, який міститься в клітинах і відіграє вирішальну роль у регуляції клітинних процесів шляхом розкладання пошкоджених білків

Explanation:

describe the process by which a germ cell’s complement of chromosomes is halved in the formation of gametes.

Answers

The process by which a germ cell’s complement of chromosomes is halved in the formation of gametes is called meiosis.

Meiosis is a type of cell division that reduces the number of chromosomes in a germ cell by half, resulting in four haploid (n) daughter cells, each with half the number of chromosomes (half the genetic material) of the parent cell. The process of meiosis begins with a diploid (2n) parent cell containing two sets of chromosomes (one from the mother and one from the father). During prophase I, the chromosomes condense and the nuclear membrane breaks down. Homologous chromosomes (chromosomes with similar genetic information) pair up to form tetrads. During metaphase I, the tetrads line up on the metaphase plate. At anaphase I, the homologous chromosomes separate and move to opposite ends of the cell. Then, during telophase I, the cell divides and two daughter cells are formed.

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Heat, radiation, alcohol, acids, bases, and the salts of heavy metals causes a protein to unfold and inactivate itself, which is called _______.

Answers

Heat, radiation, alcohol, acids, bases, and the salts of heavy metals causes a protein to unfold and inactivate itself, which is called protein denaturation.

What is protein denaturation?

Protein denaturation refers to the process by which a protein loses its shape and functional activity due to the disruption of the non-covalent bonds that maintain its three-dimensional structure. This can be caused by a range of environmental factors such as changes in temperature, pH, pressure, or exposure to chemicals, such as detergents or organic solvents.

When a protein is denatured, it can no longer perform its biological function and can become insoluble, forming aggregates or precipitates. Understanding the mechanism of protein denaturation is important for a variety of fields, including biochemistry, biotechnology, and pharmaceuticals.

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What does your body use to transduce specific external stimuli into neural activity?a. sense receptors. b. transducers. c. sensory adaptation. d. neural links

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The correct option is A ;  Sense receptors , A sensory activation happens when a physical or chemical input is converted by a sense receptor into a neural response (sensory transduction).

An individual's understanding of a feeling is called perception, which is a brain function. The ability to learn about our surroundings or the condition of our interior world is one of the main functions of sensory receptors. Receiving different kinds of inputs from various sources, the nervous system converts them into electrochemical messages. It is known as sense transmission.

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What type of niche would be occupied by organisms in deep sea coral reefs, why?

Answers

The organisms that inhabit these environments have adapted to survive in these conditions and occupy a unique niche within the ecosystem.

Survival in Deep Sea Coral Niches

Deep sea coral reefs are found in the dark depths of the ocean, typically at depths of over 200 meters. These habitats are often characterized by extreme environmental conditions, such as high pressure, low temperature, and low oxygen levels. As a result, the organisms that inhabit these environments have adapted to survive in these conditions and occupy a unique niche within the ecosystem.

One of the key niches occupied by organisms in deep sea coral reefs is the benthic (or seafloor) niche. Many species of coral, sponges, and other sessile animals are found in these environments, which attach themselves to the seafloor and filter feed on organic particles that drift by in the water column. These organisms have evolved a variety of specialized structures, such as tentacles or filters, to capture their food.

Because the deep sea is a relatively nutrient-poor environment, many organisms have adapted to feed on the remains of other organisms that have sunk to the seafloor. This includes scavengers such as crabs, shrimp, and sea stars, which help to recycle nutrients and maintain the overall health of the ecosystem.

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True or False? In order to create the possibility of generating trisomy, nondisjunction must occur during meiosis II?

Answers

It is FALSE that nondisjunction must occur during meiosis II, in order to create the possibility of generating trisomy.

When chromosomes don't correctly separate during cell division, a condition known as nondisjunction occurs, which causes an uneven distribution of chromosomes across daughter cells. The development of gametes with an additional or missing chromosome, which might cause trisomy or monosomy, respectively, in the progeny, is possible if nondisjunction takes place during meiosis I. Nondisjunction must take place during either meiosis I or meiosis II in order to give rise to the chance of producing trisomy.

Nondisjunction during meiosis II can lead to the development of gametes with two copies of the same chromosome, which, if fertilized, can result in trisomy in the progeny.

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what is base of heart?

Answers

Both atria, but primarily the left, make up the posterior region of the heart, which is its base.

Probably a better phrase for the heart's posterior surface would be its base. Not the most inferior, but rather the most superior surface of the organ. It got its name because people felt it looked like the base of a pyramid or cone that jutted obliquely to the left to the top of the heart.

The quadrangular surface of the base faces posteriorly and somewhat to the right. It is primarily made up of the posterior surface of the left atrium, with a lesser contribution from the right atrium on the right. These are its bounds:

1) Above: pulmonary trunk bifurcation.

2) Below: the posterior portion of the coronary sulcus.

3) Right and left: respective atria's convexities.

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What is the meaning of feminism in biology?

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Feminist biology is a biological approach that is concerned with the influence of gender values, the elimination of gender bias, and the overall significance of social values in biological research and activities.

Dr. Ruth Bleier of the University of Wisconsin-Madison (who produced the 1984 work Science and Gender: A Critique of Biology and Its Ideas on Women and inspired the university's endowed fellowship for feminist biology) was among those who launched feminist biology.  It strives to advance biology by including feminist critique in subjects varying from the mechanics of cell biology and sex selection to the assessment of the meaning of words such as "gender" and "sex".

Generally, the area is vast and refers to the concepts underlying both biology and feminist praxis. These considerations make feminist biology debatable and contradictory to itself, particularly when it comes to biological determinism, in which descriptive sex terms such as male and female are intrinsically confining, or extreme postmodernism, in which the term "feminist" refers to the term "feminist biology."

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Select the findings of Erwin Chargaff regarding DNA composition.a. pyrimidines = purinesb. G = Ac. A = Td. G=Ce. C = T

Answers

According to the findings of Erwin Chargaff regarding DNA composition.a. pyrimidines = purines the correct answer is e. C = T.

Chargaff's rule is a fundamental observation about the base composition of DNA molecules, first discovered by the biochemist Erwin Chargaff in the 1940s. The rule states that the amount of adenine (A) in a DNA molecule is always equal to the amount of thymine (T), and the amount of guanine (G) is always equal to the amount of cytosine (C). In other words, A=T and G=C.

Chargaff's rule is important because it helped James Watson and Francis Crick to determine the structure of DNA in 1953. By knowing that A always pairs with T and G always pairs with C, they were able to propose that the two strands of the DNA molecule are held together by hydrogen bonds between the base pairs, forming a double helix structure. Chargaff's rule also has important implications for DNA replication and genetic inheritance, as the complementary base pairing allows the DNA molecule to be accurately duplicated and passed on to offspring.

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differentiate stability and balance tne how it relates to motor development

Answers

In the context of motor development, stability, and balance are related but distinct concepts. Stability refers to the ability to maintain a fixed position or posture, and it is a prerequisite for balance.

For example, when an infant is able to sit upright without support, they have achieved stability in that position. In contrast, balance refers to the ability to maintain stability while moving, or to recover from a loss of stability.

Balance is a more complex skill that develops over time, and it involves integrating sensory information from multiple sources, including the inner ear, visual system, and proprioceptors in the muscles and joints.

As children grow and develop, they progress from basic stability to more advanced forms of balance, such as walking, running, and jumping. These skills are important for both physical activity and everyday life, and they are linked to overall health and well-being.

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Damage to your free nerve endings will have the following effect?​

Answers

Damage to your free nerve ending will have which effects: correct answer is all of the following ( Inability to detect deep pressure , Inability to detect itching and tickling sensations  , Inability to feel pain ) Option d .

Temperature, mechanical stimulation (touch, pressure, stretch), and danger can all be detected by free nerve endings (nociception). As a result, several free nerve endings function as nociceptors, cutaneous mechanoreceptors, and thermoreceptors. They thereby demonstrate polymodality.

Detecting signals from injured tissue or the possibility of injury, nociceptors are sensory receptors that also, indirectly, react to chemicals generated by the damaged tissue. Nociceptor nerve endings are free (bare) nerve endings that may be found in the skin, muscle, joints, bone, and viscera.

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Full Question:  Damage to your free nerve endings will have which of the following effects? Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer.

a Inability to detect deep pressure

b Inability to detect itching and tickling sensations

с Inability to feel pain

d All of the above

why did the discovery of ribozymes add weight to the rna world hypothesis

Answers

The discovery of ribozymes added weight to the RNA world hypothesis by demonstrating that RNA molecules may perform catalytic tasks in the absence of proteins.

According to the RNA world hypothesis, early life on Earth was based on RNA rather than DNA or proteins. According to this theory, RNA was the first self-replicating molecule capable of catalysing chemical processes required for life. These RNA molecules developed throughout time into increasingly sophisticated forms, giving rise to the DNA-based life we see today.

The discovery of ribozymes, which are RNA molecules capable of catalysing chemical processes, offered compelling evidence in support of the RNA world concept. It demonstrated that RNA can function as both a genetic material and a catalyst, implying that RNA molecules may have played an important part in the development of life on Earth. Moreover, the discovery of ribozymes has resulted in the creation of new technologies that rely on the catalytic activity of RNA molecules, such as RNA interference.

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Of the following statements and questions, which is the best example of deductive reasoning?
A. If all insects have six legs, then butterflies have six legs.
B. In repeated tosses of a coin, there is a 50/50 chance of each toss resulting in a "head."
C. How many times will the toss of coins turn "heads-up" if 100 people each toss a coin?
D. Since every insect I have examined so far has six legs, I conclude that all insects must have six legs.
E. All of these are examples of deductive reasoning.

Answers

The correct option is A; If all insects have six legs, then butterflies have six legs is the best example of deductive reasoning .

Butterflies are considered insects and are members of the Order Lepidoptera (Scaled wings). This basically means that every butterfly has six legs. Butterflies have three body sections called a head, thorax (chest), and abdomen as well as six jointed legs, two antennae, and three body parts (tail end). A butterfly's thorax is where its six legs and four wings are joined.

If the premises are true, then the conclusion must also be true in this style of reasoning. Deductive reasoning examples with sound logic Dogs have ears, and since golden retrievers are canines, they too have ears.

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input from the retinas of both eyes is processed in the a) Visual thalamus. b) Visual cortex. c) Lateral geniculate nucleus.

Answers

The input from the retinas of both eyes is processed in the Visual Thalamus and specifically in the Lateral Geniculate Nucleus (LGN), which is a part of the thalamus.

What is retina?

The retina is a thin layer of tissue located at the back of the eye. It contains photoreceptor cells that are responsible for detecting light and converting it into neural signals that can be processed by the brain to create visual images. The retina is a highly specialized and complex part of the eye that is essential for vision. The retina consists of several layers of cells, including the photoreceptor layer, which contains two types of photoreceptor cells called rods and cones. Rods are responsible for detecting low levels of light and are most sensitive to light and dark changes, while cones are responsible for color vision and are most active in bright light. Other layers in the retina include the bipolar cell layer, the ganglion cell layer, and the optic nerve fibers that transmit visual information from the retina to the brain.

Here,

The LGN receives visual information from the eyes and relays this information to the visual cortex, which is responsible for further processing and interpretation of visual information. However, it is important to note that the LGN does not simply act as a relay station; it also plays a crucial role in visual processing by selectively amplifying or suppressing certain aspects of visual information before it reaches the visual cortex.

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The new synthetic nucleotides have been inserted into the E.coli bacteria to increase the number of ____ ____ they can produce.

Answers

The new synthetic nucleotides have been inserted into the E. coli bacteria to increase the number of AMINO ACIDS they can produce.

E. coli is a commonly used model organism in molecular biology and genetic engineering. It is a type of bacteria that naturally produces a limited set of amino acids, which are the building blocks of proteins. However, by inserting new synthetic nucleotides into the genome of E. coli, researchers can introduce new genes that enable the bacteria to produce additional amino acids. Synthetic nucleotides are artificial building blocks of DNA that can be engineered to have different properties than the four natural nucleotides (adenine, guanine, cytosine, and thymine). For example, researchers can design synthetic nucleotides that can be incorporated into the genome of E. coli in place of natural nucleotides, allowing the bacteria to produce new proteins with new functions.By inserting genes for enzymes that can catalyze the production of new amino acids, researchers can expand the repertoire of amino acids that E. coli can produce. This has potential applications in biotechnology and biomedicine, where new amino acids could be used to create novel proteins with new functions. It could also have implications for the production of industrial chemicals and biofuels, where E. coli and other microorganisms are commonly used as cell factories for the production of valuable compounds.

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Medial and lateral rotation of the knee can occur when the knee is in a ______ position.

Answers

Medial and lateral rotation of the knee can occur when the knee is in a  flexed position.

When the foot is on the ground, the femur rotates medially during the final 30 degrees of extension and laterally during the first few stages of flexion. The tibia rotates in the opposite direction as the femur when the foot is raised off the ground.

As was said before, medial rotation generally happens while the knee is flexed, but it can also happen when it is in its final stage of extension. Popliteus, Semimembranosus, and Semitendinosus are principally responsible for its production, with the help of Sartorius and Gracilis.

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what is/are the main source(s) of nadph for fatty acid biosynthesis?

Answers

The oxidative branch of the hexose monophosphate shunt or pentose phosphate pathway is generally accepted to be the major cellular source of NADPH.  

To compare places of specific enzymes in  force of  NADPH for cellular biosynthesis, collections of incentive mutants were constructed by gene  dislocations and matings. These mutants include haploid strains containing  all possible combinations of elisions in  incentive genes  garbling three differentially compartmentalized iso zymes of NADP1-specific isocitrate dehydrogenase and  in the gene garbling glucose-6-phosphate dehydrogen ase( Zwf1p).

Growth phenotype analyses of the mutants indicate that either cytosolic NADP1-specific isocitrate dehydrogenase( Idp2p) or the hexose monophosphate shunt is essential for growth with adipose acids as carbon  sources and for sporulation of diploid strains, a condi tion associated with high  situations of adipose acid  conflation.  No new biosynthetic  places were  linked for mitochon drial( Idp1p) or peroxisomal( Idp3p) NADP1-specific  isocitrate dehydrogenase isozymes.

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Which of the following kingdoms contains primarily multicellular, larger-celled, photosynthetic organisms?a. plantaeb. fungic. animaliad. archaea

Answers

Option a is Correct. The Plantae kingdoms are generally composed of bigger, multicellular photosynthetic creatures. A multicellular, eukaryotic, photosynthetic creature is a member of the Plantae kingdom.

All plants belong to this kingdom and share a few traits. Plants are usually multicellular, which means they include several cells. The kingdom of plants is called Plantae. One of plants' key traits is that they have several cells. The majority of creatures in the kingdom of plants are photosynthetic, while a few parasitic species no longer possess this capacity.

'Chlorophyll, which is found in organelles called chloroplasts, is used in the process of photosynthesis. Cell walls made of cellulose are present in plants. The majority of fungus are multicellular creatures. They exhibit the vegetative and reproductive morphological phases separately. The vegetative stage is composed of hyphae, which are a tangle of thin, thread-like filaments.

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what is hammer headed bat ?

Answers

The hammer-headed bat (Hypsignathus monstrous) is a large species of fruit bat found in the rainforests of Central and West Africa.

It is named for its distinctive hammer-shaped head, which is composed of elongated nasal bones that form a structure resembling a hammer or mallet.

The hammer-headed bat is one of the largest species of fruit bat, with a wingspan of up to three feet (almost one meter) and a weight of up to two pounds (over 900 grams). It has dark brown or black fur, with lighter fur on its underbelly.

The species is known for its unique social behavior, as individuals often roost together in large groups of up to several thousand individuals. They are also important seed dispersers in the rainforest, feeding on a variety of fruits and spitting out the seeds, which can then germinate and grow into new plants.

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In three sentences, explain why birds have different lengths and shapes of beaks.

Answers

Answer:

Different bird species have differently shaped beaks because each species has evolved a beak design that suits its diet and lifestyle. Beaks function somewhat as human tools do, and they help the birds to access food.This enables the birds to sip nectar from inside flowers.

Explanation:

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