which of the following scientists can be identified as a taxonomist?

Answers

Answer 1

Answer: Taxonomy is the science of naming, describing and classifying organisms and includes all plants, animals and microorganisms of the world. Using morphological, behavioral, genetic and biochemical observations, taxonomists identify, describe and arrange species into classifications, including those that are new to science.


Related Questions

Eutherian mammals are uniquely defined by h
O aving fur.
O the young developing in a pouch.
O laying eggs.
O having a placenta.
O longer gestation periods because of more highly developed placentas. o

Answers

Laying eggs, Eutherian, placental, placental mammal, mammalian- any warm-blooded animal with skin that is somewhat or mostly covered in hair.

All mammals, with the exception of marsupials and the rare subclass of monotremes, give birth to live young that are fed milk. Any warm-blooded vertebrate with skin that is more or less covered with hair is referred to as eutherian, placental, placental mammal, or mammalian. All mammals, with the exception of the rare subclass of monotremes, give birth to live young that are fed milk. Except for monotremes and marsupials, all mammals fall under the category Eutheria.

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A student is comparing the cells of a prokaryote, an animal, and a plant. Identifying which two cell parts would show that the cell was a plant cell, and not a cell of a prokaryote or an animal?.

Answers

Answer:

A well-organized nucleus and chloroplasts can prove that it's a plant cell.

Explanation:

A prokaryotic cell will not have a well-organized nucleus as they just have strands of DNA. An animal cell will not have chloroplasts as they do not photosynthesize.

Two cell parts would show that the cell was a plant cell, and not a cell of a prokaryote or an animal are the Cell wall and chloroplast

In contrast to plant cells, animal cells lack centrioles, centrosomes (which are discussed under the cytoskeleton), numerous smaller vacuoles, and lysosomes. Unlike animal cells, plant cells have a large central vacuole and a cell wall made of cellulose, chloroplasts, plasmodesmata, and plastids used for storage. The nucleus of a prokaryote cell lacks a nuclear membrane, there are no organelles with a membrane around them (such as mitochondria or plastids), and the cell wall is usually present. It is made of peptidoglycan, and the nucleoid that contains the genetic material is there.

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what is a process in which the stabilizer, neutralizer, or synergist muscles take over for the inhibited prime mover. this can lead to an over use syndrome of that stabilizer, neutralizer, or synergist.

Answers

Synergistic dominance is the process by which a stabilizing, neutralizing, or synergistic muscle replaces the role of an inhibited prime mover, leading to overuse syndrome in the stabilizing, neutralizing, or stabilizing muscle.

What is the name of the muscle that works against and counteracts another muscle?

An antagonist is a muscle that works in the opposite direction from the prime mover. Two crucial functions of antagonists in muscle function are: They keep their posture, such as holding their arm out or standing straight.

What information can you glean from a muscle's name that contains the word "serratus"?

The fan-shaped serratus anterior muscle is located on the lateral thoracic wall. Deep behind the scapula and pectoral muscles, its primary portion is located. It is simple.

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if a species contains 23% a in its dna, what is the percentage of guanine it would contain?

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According to Chargaff's rule, if the percentage of A in the DNA of a species is 23%, the the amount of guanine will be 27%.

Chargaff's rule says that the in the DNA of any species the amount of guanine is equal to the amount of cytosine and the amount of adenine is equal to the amount of thymine. And also there exists a stoichiometric ratio in the purine and pyrimidine bases: A+G=T+C.

DNA stand for Deoxyribonucleic Acid. It is the genetic material found in majority of the organisms. There are various forms of DNA like A-type, B-type and Z-type. B-type DNA is the most common form which is a double-stranded helical molecule.

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What are the 3 main processes of the carbon cycle?

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The carbon cycle is continued by respiration, excretion, and decomposition, which release the carbon back into the atmosphere or soil.

Respiration:-  Respiration is referred to as a metabolic process in which carbon dioxide is released from the oxidation of complex organic substances and oxygen is taken in by the living cells of an organism to produce energy (in the form of ATP).

Excreting:- Excreting metabolic waste and other harmful substances from the body is a process called excretion.

Decomposition:- The first step in the recycling of nutrients used by an organism (plant or animal) to build its body is decomposition. It is the process by which the dead tissues disintegrate and change into more basic organic forms. Many of the species at the base of ecosystems rely on these as a food source.

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All somatic motor neurons produce __________.

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Only acetylcholine. In addition to acting as a transmitter for the parasympathetic and somatic motor systems, acetylcholine (Ach) also has significant central nervous system effects.

At their connections with skeletal muscle fibers, all somatic motor neurons produce acetylcholine (ACh). The result is always excitatory, and the muscle fibers contract if the stimulation hits the threshold. At neuromuscular junctions, somatic motor neurons use the neurotransmitter acetylcholine to activate skeletal muscle fibers. In addition to controlling the body's voluntary motions, the somatic nervous system is also responsible charge of reflexes, a particular class of involuntary muscle reactions that are regulated by a cerebral pathway known as the reflex arc.

The complete question is:

All somatic motor neurons produce __________.

both epinephrine and norepinephrine

only norepinephrine

only acetylcholine

both acetylcholine and norepinephrine

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Which of the following best describes an advantage of constructing habitat corridors?
A. Corridors connect habitats separated by fragmentation and connect wildlife populations.
B. Corridors prevent invasive species from traveling between protected habitats.
C. Corridors provide a safe passage for vehicles and allow humans to travel within wildlife preserves.
D. Corridors increase the amount of protected area that is not affected by humans.

Answers

The statement that best describes an advantage of constructing habitat corridors is that Corridors connect habitats separated by fragmentation and connect wildlife populations. That is option A.

What are habitat corridors?

Habitat corridors is defined as those wildlIfe corridors that allows for a connection between populations or habitats that are isolated with the aim of promotion of genetic diversity.

The importance of habitat corridors include the following:

increase food sources, provide valuable cover, decrease the chance of predation, and by reconnection of fragmented and isolated populations.

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How do clams move without a brain?

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Clams do not have a centralized brain but they do possess a nervous system with a few nerve cells that regulate their movement and other body functions as well.

Clams are the animals that belong to the phylum Mollusca. They possess two valves and hence are also called bivalves. Some species of clams are edible as well. The clams are found inside the oceans on the sandy floor of the water.

Brain is the centralized organ of the nervous system found in various organisms like vertebrates. It is responsible for the regulation of the functions and activities of the organism's body.

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The principal difference between tropical and temperate rainforests is the amount of precipitation they receive.
true
false

Answers

The principal difference between tropical and temperate rainforests is the amount of precipitation they receive. The statement is false.

Rainforests are classified into two types: tropical and temperate. Tropical rainforests are situated closer to the equator, when temperatures are higher. Temperate rainforests can be found near colder coastal locations north or south of the equator.

The tropical rainforest is a hot, damp ecosystem with year-round rain. It is famous for its lush plant canopies that form three distinct levels. The highest layer, or canopy, comprises gigantic trees that may reach heights of 75 meters (approximately 250 feet).

A vast variety of plants from this level are commonly used as houseplants. These plants adapt quickly to residential surroundings due to the limited quantity of sunshine and rainfall they receive. Wet leaves and leaf litter cover the rainforest's lowest layer or floor.

Due to a lack of sunshine, there are few vegetation on the forest floor. However, the hot, wet environment and all of the dead plant debris offer ideal circumstances for bacteria and other microbes to thrive.

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Where do germline mutations occur?

Answers

Answer:

Germline mutations occur in gamets.

In a biology lab, a student has been asked to identify smooth muscle by looking at samples on the table. The student correctly identifies the smooth muscle because it is the muscle in the shape of.

Answers

Answer: Bundles

Explanation:

The smooth muscle cells are small. These cells are spindle in shape and they do not exhibit striations. They appear in the form of bundles of thin and thick filaments.

The smooth muscles are involuntary muscles. The cells of these muscles have nucleus that is located in the center. These muscles contract automatically and slowly.

On the basis of the above description, the description of the smooth muscles can be related to the bundles.

Happy Holidays!!

Answer: d

Explanation: so u dont gotta read everything else the other person put

The genetic material of an organism has developed an error in replication, and this error is now part of the genotype in its
gamete cells. What could happen to the offspring of this organism?

A. Its offspring will revert to the genetic material of an evolutionary ancestor.

B. Its offspring will revert to the original genetic material from the previous generation.

C. Its offspring will inherit a completely different set of genetic material each generation.

D. Its offspring will inherit the error in replication if the error does not prevent reproduction.

Answers

Its offspring will inherit the error in the replication if the error does not prevent reproduction.

What are Gamete cells?

Gamete cells are reproductive cells that combine with another gamete cell during sexual reproduction. They contain half the genetic material of the organism, and when two gametes join together during fertilization, they form a zygote that contains the full genetic material of the organism. In humans, gamete cells are the sperm cells produced by males and the egg cells produced by females.

What is Reproduction?

Reproduction is the biological process by which the organisms create descendants. It is a fundamental feature of all known life; each individual organism exists as the result of reproduction. The known methods of reproduction are broadly grouped into two main types: sexual and asexual reproduction.

Hence, Option D is correct.

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Are mutations passed onto offspring?

Answers

If a parent carries a gena in their egg or sperm, it can pass to their child

What happened when Mendel cross pollinated purple and white flowers?

Answers

Mendel then combined these plant lines for purebreeding and noted the characteristics of the hybrid offspring. He discovered that every F1 hybrid of the first generation resembled one of the mother plants.

What will occur if a purple floral and a white flower are crossed?

Mendel observed that the F1 generation produced by hybridizing true-breeding  progeny plants only exhibited one feature of a characteristic. A true-breeding purple-flowering plant, for instance, might have been crossed with a truthful white-flowering plant.

What happened as a result of Mendel's cross-pollination?

However, Mendel found that crossing two distinct purebred plant varieties resulted in offspring that resembled either of the parents, not a combination of the two.

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The hypothalamic-pituitary-gonadal axis ________.

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The hypothalamic-pituitary-gonadal axis involves FSH and LH release.

The hypothalamic-pituitary-gonadal (HPG) axis (also known as the hypothalamic-pituitary-ovarian/testicular axis) refers to a hypothalamus, pituitary gland, as well as gonadal glands as a single entity. Because these glands frequently work together, physiologists and endocrinologists prefer to refer to them as a single system.

The HPG axis is important in the development as well as regulation of many body systems, including the immune and reproductive systems. Changes in this axis result in changes inside the hormones produced from each gland, which have a variety of local and systemic impacts on the body. In animals, the axis regulates development, reproduction, and ageing. GnRH-expressing neurons secrete gonadotropin-releasing hormone (GnRH) from the hypothalamus.

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if you are a marine biologist who wants to study organisms that are capable of chemosynthesis, where would you collect organisms for your research?

Answers

If I were a marine biologist who wanted to study organisms that are capable of chemosynthesis, I would collect organisms for my research from a variety of deep ocean environments. These environments include hydrothermal vents, methane seeps, cold seeps, and whale falls.

Hydrothermal vents are located near tectonic boundaries in the deep ocean, and are characterized by high concentrations of hydrogen sulfide, a compound that serves as a source of energy for many organisms. These vents are home to a variety of chemosynthetic bacteria, including species of bacteria that can directly use hydrogen sulfide for chemosynthesis. I would collect organisms from hydrothermal vents by using submersible vehicles that can reach the depths at which these vents are found.

Methane seeps are another environment where chemosynthetic organisms are found. Methane is released from seeps, and this methane serves as a source of energy for chemosynthetic bacteria. I would collect organisms from methane seeps using submersible vehicles equipped with sampling devices, such as coring devices or sediment traps.

Cold seeps are another environment where chemosynthetic organisms are found. These seeps are characterized by the presence of methane, which is produced by bacteria. I would collect organisms from cold seeps using submersible vehicles equipped with sampling devices, such as coring devices or sediment traps.

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Trace the auditory projection pathway from start to finish by placing these structures in order, starting with the nerve leaving the inner ear.

1. Cochlear nerve
2. Cochlear nuclei of medulla
3. Inferior colliculi
4. Thalamus
5. Primary auditory cortex

Answers

The auditory projection pathway from start to finish by placing these structures in order, starting with the nerve leaving the inner ear the correct option is 5. Primary auditory cortex.

The vestibulocochlear nerve carries information from the receptors in the inner ear's organ of Corte (cochlear hair cells) to the brain. For conscious perception, this route ultimately connects to the primary auditory cortex. Additionally, there is concurrent unconscious processing of auditory information.

The first order neurons' cell bodies are housed in the spiral ganglion. These neurons go through the osseous spiral lamina and get input from hair cells in the Organ of Corte .The cochlear nerve is primarily made up of their core axons.

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.

identify the epithelial tissue type pictured below.

Answers

Every cell in the single cell layer of a simple epithelium is in direct contact with the basement membrane beneath it.

They will include:

straightforward squamous epitheliumAdipose connective tissue, Cuboidal epithelium

Simple squamous epithelium has a single layer of flat cells that is in contact with the basal lamina. They can be found, among other locations, in the lining of the heart, blood arteries, lymph vessels, and pulmonary air sacs. They consist of a single layer of nucleated flat cells.

Cuboidal epithelium lines tiny channels and tubules. It is connected to both secretion and absorption. They are composed of cells that are cube-shaped and have circular nuclei in the middle or somewhat to the bottom.

Adipocytes make up the connective tissue in adipose tissue. Adipose tissue's main purposes are to store fat and provide insulation. It is located close to internal organs and beneath the skin. The cytoplasm and nucleus are pushed outside by lipid droplets.

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What are simple examples of homeostasis?

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Homeostasis is the ability to maintain internal stability in an organism in response to the environmental changes. The internal temperature of the human body is the best example of homeostasis.

Homeostasis, also known as homoeostasis in the UK, is the stable internal, external, and chemical conditions that are maintained by biological systems.

This is the state of the organism when everything is operating at its best and numerous factors, including fluid balance and body temperature, are maintained within predetermined ranges (homeostatic range).

Despite changes in the environment, nutrition, or level of exercise, other factors such as the pH of extracellular fluid, the concentrations of sodium, potassium, and calcium ions, as well as the blood sugar level, must be controlled.

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example of a body part that is made up of scaffold is

Answers

Answer: Kidney

Explanation: scaffolds are structures that mimic real organs.

Answer:

One example of a body part that is made up of a scaffold is the skeleton.

Explanation:

The skeleton is a structural system in the body that provides support and protection for the body's organs and tissues. It is made up of bones, which are connected to one another by joints. The bones of the skeleton are arranged in a specific pattern and shape, forming a scaffold that supports the body and allows for movement.

Other examples of body parts that are made up of scaffolds include the respiratory system, the circulatory system, and the musculoskeletal system. These systems are made up of a network of tubes, vessels, and muscles that provide support and function to the body.

What structure contains the cell bodies of sensory neurons?

Answers

Sensory neurons' cell bodies, which transmit information from the outside world to the spinal cord, are found in the dorsal root ganglion.

These neurons are pseudo unipolar and have an axon-like process that divides into two branches, one of which extends toward the spinal cord's grey matter while the other branch travels toward the periphery.

Through the spinal nerve, where they run alongside motor fibers, fibers that are headed towards the periphery leave the ganglion. The dorsal root serves as a conduit for spinal cord-bound fibers. To govern the contraction of a muscle, a motor neuron innervates one or more fibers.

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I notice that my students do better on tests when I give them cookies beforehand. Write a hypothesis for an
experiment that could investigate this observation. whats the independent and dependent variable and constants and control groups and experimental group

Answers

Cookies from the constants brand kids will do better if they are given cookies before to the test.

What are the constants?

The kids will do better if they are given cookies before to the test. Cookies from the constants brand, DV kids with cookies, and IV cookies control.

Hypothesis for an experiment students do better on tests with independent and dependent variables and constants in groups.

Therefore, Group: Children not given cookies kids in an experimental group eating cookies.

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"How has the desert landscape of the Sahara influenced historical migration patterns in Africa?
a. The Sahara Desert has facilitated the spread of disease in Africa.
b. The Sahara Desert has attracted migrants to the area to herd cattle.
c. The Sahara Desert has served as a barrier to travel and migration.
d. The Sahara Desert has served as a highway for immigrants leaving Africa.
"

Answers

answer :

b. the sahara desert has attracted

migrants to the area to herd cattle.

The desert landscape of the Sahara influenced historical migration patterns in Africa as c. The Sahara Desert has served as a barrier to travel and migration.

The Sahara Desert can be found in the north along the Tropic of Cancer, while the Namib Desert can be found in the south along the Tropic of Capricorn. The Sahara, which covers a significant portion of northern Africa, serves as a formidable barrier that separates the Muslim, Arab North of the continent from the traditional African cultural groups in the South. In a separate chapter, the cultures and political histories of North Africa and Southwest Asia are discussed together.

The landmass known as Pangaea, the last supercontinent, marks the beginning of Africa's physical geography 300 million years ago. Pangaea broke up around 175 million years ago, drifting and colliding to form the continents we know today. The center of this supercontinent was Africa.

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how do the endocrine system and the nervous system complement each other in regulating the bodys functions

Answers

The Endocrine system sends hormones through the Circulatory system to control and coordinate body functions in much the same way as the nervous system uses tiny electrical signals. brain and complement each other, but they tend to work at different speeds

Does protease break down protein?

Answers

One or more long chains of amino acid residues make up the massive biomolecules and macromolecules known as proteins.

A polypeptide is an ordered collection of residues of amino acids. A protein has at least one lengthy polypeptide in it. Less than 20–30 residue polypeptides are frequently referred to as peptides instead of proteins and are known as short polypeptides. Peptide bonds as well as connections between nearby amino acid residues hold the individual amino acid residues together. The genetic code's encoding of a gene's sequence determines the arrangement of amino acid residues in a protein. However, in some organisms, the genetic code can also include selenocysteine and—in some archaea—pyrrolysine.

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how does the sodium-potassium pump help maintain the resting membrane potential? choose the correct option. group of answer choices moves potassium against its concentration gradient. moves sodium against its concentration gradient. moves potassium ions in and sodium ions out. moves sodium ions in and potassium ions out.

Answers

The sodium-potassium pump maintains the resting membrane potential by moving sodium ions out and potassium ions into the cell membrane.

By exchanging three intracellular potassium ions for two extracellular sodium ions, the sodium-potassium pump contributes to the maintenance of the resting membrane potential.

The sodium-potassium pump constantly progresses three sodium ions are transported out of the cell for every two potassium ions it shifts in. As a result, it retains the huge potassium ion gradient across the membrane, which serves as the foundation for resting membrane potential.

Sodium and potassium ions are moved by the sodium-potassium pump system against huge concentration gradients. It flushes three sodium ions are transported and into the extracellular fluid while moving two potassium ions into the cell where potassium levels are elevated.

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What is the relationship between chromosomes DNA genes and proteins?

Answers

Chromosomes are made up of DNA, which contain the instructions for making proteins.

What do you mean by chromosomes?

Chromosomes are structures within the nucleus of cells that contain DNA. They are composed of protein and one molecule of DNA, and they contain the genetic information that determines an organism's inherited characteristics and traits.

Genes are made up of segments of DNA, and they provide the instructions for making proteins. Proteins are the molecules that do most of the work in the cells. They are made from the instructions found in DNA, which are stored in the chromosomes.

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What is Stage 1 of photosynthesis called?

Answers

The light reactions are the first phase of photosynthesis.

Photosynthesis occurs in two phases. In phase I, water is used to transform solar energy into chemical energy, which is then stored in ATP and NADPH. As a waste product at this stage, oxygen is also released. In phase II, glucose is created by combining carbon dioxide with chemical energy from ATP and NADPH. In the cells of plants, organelles are called chloroplasts. In chloroplast contains grana are orderly stacks that are found in each chloroplast. Thylakoid membranes, which resemble sacs, make up the grana. Photosystems, which are collections of molecules that include the green pigment chlorophyll, are found in these membranes.

Hence, the light reaction in photosynthesis is used to create energy molecules.

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What are 5 ways to Minimise microbial contamination?

Answers

The five ways to minimize microbial contamination are sanitation, sterilization, washing food before consumption, drinking plenty of water and ensure sufficient sunlight/ ventilation.

Microbial contamination refers to microbial infestation or inclusion into human body. It can be intentional or unintentional. The major microbes are fungi, yeast, virus or protozoans. They cause diseases which may be fatal for human health. It is important to protect oneself from such infection and some ways can be by ensuring hygiene and cleanliness around our houses and inside the houses too. There should not be any water logging. Vaccination also helps us to fight against several disease causing organisms by introduction of antibodies inside the human body. Drinking water helps to remove dead, weakened organism to be flushed out by urination. Sunlight helps to weaken the organisms by partially deactivating them due to high temperature.

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A hot air balloon floats in the air while the torch is on. After the fire is
turned off, the temperature of the gas in the balloon decreases. Which of
the following will happen to the gas pressure inside of the balloon?
a) The pressure will increase
b) The pressure will decrease
c) The volume of the gas will increase
d) None of the above will happen

Answers

The balloon is raised by hot air rising inside of it. A gas's pressure is directly correlated with its temperature. Consequently, the pressure rises.

What's the volume of a gas?

The area occupied by gaseous particles under normal temperature and pressure circumstances is referred to as the volume of gas. It is identified as a "V." The letter "L" stands for "liters," the SI unit of volume. At normal temperature, a mole of gas has a volume of 24 m3, or 24 000 cm3. The molar volume is the amount of space that one mole of any gas takes up at STP (22.4 L). Take note that the second value of the variable is created by multiplying the first value by fractions of the other two variables. EXAMPLE: At STP, a gas sample takes up 125 mL of space.

How do you calculate the volume of gas and how is volume related to gas?

For instance, the formula for calculating the volume of 40 moles of a gas at a temperature of 250 K and a pressure of 1013 hPa is: V = nRT/p = 40 * 8.31446261815324 * 250 / 101300 = 0.82 m3.

A contained gas's pressure will rise when its volume is reduced, and fall when its volume is increased. In actuality, the pressure reduces by the same factor as the volume increases, and vice versa.

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