The {{c1::occipital lobe}} is where visual information is processed

Answers

Answer 1

The occipital lobe, located at the back of the brain, is responsible for processing visual information. This region interprets incoming visual stimuli from the eyes and helps us recognize and make sense of the images we see.

The occipital lobe is located in the back of the brain and is responsible for processing visual information from the eyes. It contains different areas that specialize in various aspects of visual perception, such as color, shape, and movement.

When light enters the eyes and reaches the retina, it is converted into electrical signals that travel to the occipital lobe via the optic nerve. Once there, the signals are decoded and integrated into a coherent visual experience, allowing us to see and interpret the world around us.

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Related Questions

Which of the following is a job for a landscape architect?

planning a municipal park

conserving land on traditional farms

operating machinery on crops

cutting down trees on private land

Answers

Answer:

1 do i of

Explanation:

Answer:

Planning a municipal park

Explanation:

Landscape architects are dedicated to building squares, parks, places mainly for a public purpose.

it specifies the number of pineapple slices in a canned product?a. standard of quality b. standard of identity c. standard of value d. standard of fill of container

Answers

Based on the information provided, the term that is most relevant to the question is the "standard of fill of container." Option D

The standard of fill of container refers to the regulation that governs the quantity of a product that can be packaged and sold in a particular container. This standard is set by the government to ensure that consumers receive the quantity of product that they expect when purchasing a particular package size.
In the case of a canned product, the standard of fill of container would specify the net weight or volume of the product in the can, rather than the number of pineapple slices. However, the number of slices may be listed on the label as part of the product's identity or description.
On the other hand, the standard of quality refers to the level of quality that a product must meet to be sold to consumers. This standard may include factors such as taste, texture, appearance, and nutritional content.
The standard of identity refers to the characteristics that a product must have to be considered a particular type of product. For example, the standard of identity for canned pineapple may include requirements for the fruit's size, color, and consistency.
The standard of value refers to the relative worth of a product compared to other products on the market. This standard may include factors such as price, quality, and convenience.

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Based on the information provided, the term that is most relevant to the question is the "standard of fill of container." Option D

The standard of fill of container refers to the regulation that governs the quantity of a product that can be packaged and sold in a particular container. This standard is set by the government to ensure that consumers receive the quantity of product that they expect when purchasing a particular package size.In the case of a canned product, the standard of fill of container would specify the net weight or volume of the product in the can, rather than the number of pineapple slices. However, the number of slices may be listed on the label as part of the product's identity or description.On the other hand, the standard of quality refers to the level of quality that a product must meet to be sold to consumers. This standard may include factors such as taste, texture, appearance, and nutritional content.The standard of identity refers to the characteristics that a product must have to be considered a particular type of product. For example, the standard of identity for canned pineapple may include requirements for the fruit's size, color, and consistency.The standard of value refers to the relative worth of a product compared to other products on the market. This standard may include factors such as price, quality, and convenience.

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What is the origin of mitochondria and How has mitochondria evolved?​

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Mitochondria and chloroplasts likely evolved from engulfed prokaryotes that once lived as independent organisms. The origin of mitochondria guides that they are descended from specialized bacteria (probably purple nonsulfur bacteria)
It evolved from engulfed prokaryotes that were once living as an independent organism. A eukaryotic cell engulfed an aerobic prokaryote which formed an endosymbiotic relationship with the host eukaryote and developed into a mitochondria. Hope this helps :) lmk if I’m wrong plz

Explain Meiosis.
Please do it in 3 sentences or more

Answers

Answer:

Explanation:

Meiosis is a special type of cell division of germ cells in sexually-reproducing organisms used to produce the gametes, such as sperm or egg cells. It involves two rounds of division that ultimately result in four cells with only one copy of each paternal and maternal chromosome.

In numbers 34-36 label each red blood cell as being in a: A. isotonic, B. hypertonic, or C. hypertonic ​

In numbers 34-36 label each red blood cell as being in a: A. isotonic, B. hypertonic, or C. hypertonic

Answers

Answer:

if you got fever you drink tonic not isotonic

is Primary Hyperaldosteronism cancer?

Answers

Primary aldosteronism is a group of disorders, originally described by JW Conn, in which there is a non-suppressible secretion of aldosterone and hypertension. Aldosterone is a salt-retaining hormone synthesized by the adrenal gland that is regulated by multiple factors, with the renin-angiotensin system and serum potassium being the major factors. Additional minor regulators include adrenocorticotropic hormone (ACTH), atrial natriuretic factor, and dopamine

Primary hyperaldosteronism can be caused by either hyperactivity in one adrenal gland (unilateral disease) or both (bilateral disease). Unilateral disease is usually caused by an aldosterone producing adenoma (benign tumor) and less commonly by adrenal cancer or hyperplasia (when the whole gland is hyperactive). Bilateral disease is usually caused by bilateral hyperplasia (when both glands are hyperactive). There are rare genetic syndromes like familial hyperaldosteronism type I and II which may cause both glands to be hyperactive.

BRAINLIEST!!!

What is the regulation of stable internal conditions inside an organism or a cell?
A. Responding to stimuli
B. Obtaining and using energy
C. Homeostasis
D. Cellular respiration

Answers

I think it’s D based off this I also did this exam

Answer:

The answer is (C)Homeostasis

What flower only blooms every 100 years?​

Answers

Answer:

Agave ocahui

Explanation:

The correct answer is the

Agave ocahui grows in Chicago

When an X bearing sperm fertilises the egg the resulting zygote has the following combination of chromosomes:

Answers

Answer:

22+xx

Explanation:

xxxxxxxxxxxxxxxxx

What is the role of reverse transcriptase in DNA technologies?
A. To unzip DNA strands
B. To find mRNA
C. To produce proteins
O D. To make cDNA

Answers

Answer:

D...........................................................................

Explanation:

Reverse transcriptase may be a DNA polymerase enzyme that transcribes single-stranded RNA into DNA.

What is reverse transcriptase?

This enzyme is in a position to synthesize a double-stranded DNA into a single-strand DNA once the RNA is transcribed in 1st step.

Found in retroviruses, like the human immunodeficiency virus (HIV).

Reverse transcriptase is used to form a cDNA copy of the mRNA.

The cDNA sample is then amplified by PCR. This yields multiple copies of cDNA without introns

Thus, we can conclude that the correct option is D.

To make cDNA is the role of reverse transcriptase in DNA technologies.

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Listed below are adaptations of terrestrial (land) vertebrates. Which is a characteristic only of truly terrestrial animals with no need to return to water at any stage of the life cycle? Select one: a. lungs b. hearts with more than two chambers c. amniotic eggs

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The characteristic only of truly terrestrial animals with no need to return to the water at any stage of the life cycle is c. Amniotic eggs

Amniotic eggs are a unique adaptation found in reptiles, birds, and mammals. These eggs have a protective shell and contain specialized membranes that allow the embryos to develop in a terrestrial environment without the need for an aquatic environment. This adaptation is crucial for reproduction and allows these animals to complete their entire life cycle on land without the need to return to the water for reproduction or development. Amnion: The amnion is a fluid-filled sac that surrounds and protects the developing embryo. It helps cushion and provide a stable aquatic environment for the developing embryo, preventing desiccation and physical damage. Chorion: The chorion is an outer membrane that surrounds the amnion and other embryonic membranes. It helps facilitate gas exchange, allowing oxygen to enter the egg and carbon dioxide to be removed.

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Name and briefly describe three examples of mechanical weathering.

Answers

Weathering processes are of three main types: mechanical, organic and chemical weathering. Mechanical weathering is also known as physical weathering. Mechanical weathering is the physical breakdown of rocks into smaller and smaller pieces. One of the most common mechanical actions is frost shattering.

Bacteria are helpful to humans in many ways, including all of the following EXCEPT which one?A) production of antibioticsB) production of soy sauceC) production of vitamins for the human bodyD) breakdown of raw sewageE) digestion of cellulose in the human intestine

Answers

Bacteria are helpful to humans in many ways, including all of the following EXCEPT digestion of cellulose in the human intestine. The correct option is (E).

Bacteria are incredibly diverse and play important roles in many aspects of human life. Bacteria are used in the production of antibiotics, food and beverages, and even in the treatment of wastewater. They are also important for the digestion of food in the human body and the production of essential vitamins, such as vitamin K.

While bacteria are involved in the digestion of some types of carbohydrates in the human intestine, such as lactose, they do not play a significant role in the digestion of cellulose. Instead, cellulose is broken down by enzymes produced by certain microorganisms, such as fungi and protozoa, in the digestive systems of ruminants like cows and sheep. Humans, on the other hand, lack the enzymes necessary to break down cellulose and cannot digest it as a source of energy.

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a biome is identified by its particular set of abiotic factors, like ____ and _______…and its biotic factors, like ______ and ______.

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A biome is identified by its particular set of abiotic factors, such as climate and soil characteristics, and its biotic factors, such as plant and animal species.

Abiotic factors refer to non-living components of the environment that influence the characteristics of a biome. These factors can include temperature, precipitation, sunlight, humidity, wind patterns, soil type, and nutrient availability. Abiotic factors play a crucial role in shaping the physical and chemical conditions of an ecosystem, which in turn influence the types of organisms that can thrive in that biome.Biotic factors, on the other hand, are the living components of an ecosystem. These factors include the various species of plants, animals, fungi, and microorganisms that interact with each other and their environment within the biom1e.

Biotic factors contribute to the biodiversity and ecological dynamics of a biome, as organisms rely on each other for food, shelter, reproduction, and other ecological interactions.

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Which of the following pollutants are most likely the result of a living organism?

Answers

Cells! I think that’s right but don’t quote me on that

Answer:

FULL QUESTION:

Which of the following pollutants are most likely the result of a living organism?

I. Mold

II. Pollen

III. Radon

Answer:

Mold and pollen are results of living organisms.

I and II only.

Although radon occurs naturally (radon gas is a result of uranium being broken down in the rocks and soil below our feet, stated in the lesson), the reason radon is not in this category is because it is not directly a result of living organisms, only of non-living elements of nature - soil and rock.

Give an account on the history or classification or plants from the ancient systems to the modern phylogenetic systems.

Answers

The history of plant classification dates back to ancient times when early civilizations recognized and categorized plants based on their uses, such as food, medicine, or materials.

These early systems were largely based on observable characteristics like size, shape, or growth habit. One of the earliest known plant classifications is attributed to Theophrastus, a student of Aristotle, who classified plants into trees, shrubs, and herbs based on their growth forms.

In the Middle Ages, plant classification was influenced by the Doctrine of Signatures, a belief that plants resembling body parts could be used to treat ailments related to those parts. This led to the concept of "herbal signatures" and the use of plant morphology as a basis for classification.

During the 18th and 19th centuries, the Linnaean system of classification, developed by Carl Linnaeus, revolutionized plant taxonomy. Linnaeus introduced the binomial nomenclature, assigning each plant a unique two-part scientific name consisting of its genus and species. This system focused on the reproductive structures of plants and organized them into a hierarchical classification based on similarities and differences.

In the late 19th and early 20th centuries, advancements in microscopy and molecular biology led to new insights into plant relationships. The advent of evolutionary theory and the understanding of common ancestry led to the development of phylogenetic systems of classification. These systems classified plants based on their evolutionary relationships and genetic similarities.

Modern phylogenetic systems, such as the APG (Angiosperm Phylogeny Group) system, utilize molecular data, particularly DNA sequencing, to reconstruct the evolutionary history of plants. They group plants into clades or monophyletic groups that share a common ancestor. These systems aim to reflect the true evolutionary relationships among plants and provide a more accurate understanding of their classification.

Overall, the history of plant classification has evolved from ancient systems based on observable characteristics to modern phylogenetic systems based on evolutionary relationships and genetic data. This progression has contributed to a deeper understanding of the diversity and relationships among plants and continues to shape our knowledge of the plant kingdom.

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What are the 4 steps of mitosis and briefly explain them?

Answers

The 4 steps of mitosis are Prophase,  Metaphase, Anaphase, Telophase.

The chromosomes shorten and thicken during prophase. Chromosomes align in the centre of the cell during metaphase. Chromatids split off at the centromere and migrate to opposing poles during anaphase. Telophase: Following the reorganisation of nuclear envelopes surrounding each cluster of chromosomes, two nuclei are created.

A centriole that is positioned outside the nucleus splits during the prophase, the first phase. The nuclear membrane vanishes when the lengthy, threadlike substance of the nucleus coils up into the visible chromosomes. Long, fine threads protrude from the centrioles in all directions. The spindle is made up of several of them from one centriole joining strands from the other.

Metaphase, the second stage of mitosis, sees the chromosomes travel onto the spindle's equatorial plane. The third phase, called anaphase, begins when the chromatids divide and move to the opposite ends of the cell. The chromosomes are the split chromatids. A whole pair of chromosomes moves in this way to reach each centriole.

In the telophase, the last step, the cell divides. Contrary to what happened during prophase, the chromosomes uncoil, fresh membranes form around the nuclei, and the spindle fibres disappear. Two identical cells have formed from the original one, and they are now ready to begin their initial growth phase.

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Cell walls are only found in animal cells.

Answers

Answer:

False

Explanation:

Animal cells do not have a cell wall

Answer:

i think so yes beacuse i remember it that i read in in science

An animal that is endothermic and homoeothermic A. uses metabolic energy to regulate its body temperature and maintains a relatively constant body temperature B. has its body temperature determined primarily by the environment, but maintains a relatively constant body temperature C. has its body temperature determined primarily by the environment and has a broad range of body temperature variation D. behaviorally regulates its body temperature and has a broad range of body temperature variation E. uses metabolic energy to regulate its body temperature but has a broad range of body temperature variation

Answers

Answer: The correct option is A (uses metabolic energy to regulate its body temperature and maintains a relatively constant body temperature).

Explanation:

HOMOEOTHERMIC animals are also called endothermic animals. They are the warm blooded animals which uses heat energy generated metabolically to regulate and maintain a relatively constant body temperature. Examples of animals that are endothermic include the birds and mammals.

The temperature which they maintain is deep inside the body and not the skin temperature.

Also the temperature of a body is affected by the heat it gains and losses. The body gains heat mainly:

--> by absorbing it from its surroundings

--> from the heat released during the catabolic reaction that occur all the time in the body cells.

--> by conduction, convection and radiation from the surface of the body

--> through evaporation, especially of sweat and

--> in the air that is exhaled and urine that leaves the body.

Under normal circumstances, the heat the body gains is balanced by the heat it loses. A RISE in body temperature stimulates the following processes to get rid of excess body heat:

--> A decrease in metabolic rate: the body slows down its activities to decrease the metabolic rate. This reduces the heat released by metabolic reactions, hence minimizing heat production within the body.

A FALL in body temperature stimulates the following processes to produce and conserve heat:

--> increasing metabolic rate: The body increases its metabolic rate, especially that of the liver, to produce more heat

match the serous membrane correctly with the definition.1. parietal pleura (click to select)2. visceral pleura (click to select)3. parietal pericardium (click to select)4. visceral pericardium (click to select)5. parietal peritoneum (click to select)6. visceral peritoneum (click to select)

Answers

These serous membranes play important roles in protecting and lubricating organs, as well as helping to maintain their position within the body cavities.

By matching the serous membranes with their correct definitions, we get:

1. Parietal pleura: This serous membrane lines the inner surface of the chest cavity, covering the outer surface of the lungs.


2. Visceral pleura: This serous membrane covers the surface of the lungs and is in direct contact with them.


3. Parietal pericardium: This serous membrane forms the outer layer of the pericardial sac, enclosing the heart.


4. Visceral pericardium: Also known as the epicardium, this serous membrane forms the inner layer of the pericardial sac and is in direct contact with the heart.


5. Parietal peritoneum: This serous membrane lines the inner surface of the abdominal cavity, covering the abdominal organs.


6. Visceral peritoneum: This serous membrane covers the surface of the abdominal organs and is in direct contact with them.

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D. Consider the following: The crabs that live in the aquatic biome pictured depend onliving in shallow water that has a temperature no greater than 60 degrees F. Ifclimate change causes an increase of that water's temperature to 62 degrees F, whatwill likely happen to the dolphins in that biome, and why?

D. Consider the following: The crabs that live in the aquatic biome pictured depend onliving in shallow

Answers

Climate change is expected to be the main cause of mass extinctions in the 21st century and dolphins are not exempted. The swift warming of the planet leads to a loss of habitat for dolphins and increase competition for a lessening amount of prey species. It disturb the timing and ranges of their migration, distribution and ability to reproduce.

Some dolphins may not be able to survive and limit the ability to move northwards into cooler habitat as waters become warmer.

How do the physicochemical protein properties differ between a protein functioning in the cytosol compared to one functioning within the cell membrane? Please elaborate and include how this affects the purification technique chosen?

Answers

The properties of physicochemical proteins differ based on cellular location, and this variation affects the purification technique used for the protein.

Proteins are involved in many vital cellular processes. Based on the cellular location, the properties of proteins, such as their physicochemical properties, may differ.

The proteins that perform functions in the cytosol, which is the aqueous part of the cytoplasm, are generally hydrophilic. Proteins that are found in the cell membrane, on the other hand, are usually hydrophobic. The proteins present in the cytosol are water-soluble. The proteins present in the cell membrane are insoluble in water. The cytosol contains enzymes that perform the metabolism of various compounds such as glucose, amino acids, and nucleotides. On the other hand, the cell membrane is made up of lipids and proteins and performs various cellular functions, including signal transduction, membrane transport, and cell-cell interactions.

The physicochemical properties of proteins influence the purification techniques that are used to purify them. The selection of purification techniques will be based on whether the protein is hydrophilic or hydrophobic.

Ion exchange chromatography, gel filtration chromatography, and affinity chromatography are among the common techniques used for the purification of hydrophilic proteins.

In contrast, hydrophobic interaction chromatography, reverse-phase chromatography, and detergent solubilization are commonly used to purify hydrophobic proteins.

Thus, the different ways of differentiating between a protein functioning in the cytosol compared to one functioning within the cell membrane is explained above.

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(PSYCHOLOGY)
There's a dramatic increase in the likelihood of a person becoming ill or dying the year following the death of a spouse. Describe some of the specific biological and psychological processes that may contribute to this effect.

In depth response pls

Answers

In psychology, this is called Widower Syndrome. The pattern reveals a significant rise in the widower's risk of mortality, notably, but not solely, in the three months following the loss of their spouse. This is sometimes referred to as "dying of a shattered heart." Being widowed increases the risk of getting serious mental problems.

What is the Windower Syndrom about?

Widow The term "brain fog" refers to the fogginess and detachment that might occur following the loss of a partner. This sensation is regarded to be a coping technique in which the brain tries to protect itself from the agony of great trauma or loss.

It is usual for the grieving process to last a year or more. A person in grief must deal with the emotional and life upheavals that result from the death of a loved one. Although the sadness may lessen over time, it is natural to remain emotionally linked with the departed for many years.

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What does “denature” mean in terms of protein structure?

Answers

Explanation:

Denaturation, in biology, process modifying the molecular structure of a protein. Denaturation involves the breaking of many of the weak linkages, or bonds (e.g., hydrogen bonds), within a protein molecule that are responsible for the highly ordered structure of the protein in its natural (native) state.

What chemical does your brain release when you are kind?

Answers

Answer: The brain release serotonin and dopamine when you are being kind.

Explanation: I hope this helps.

please help grades are due today

please help grades are due today

Answers

1.) E
2.) J
3.) H
4.) F
5.) C
6.) B
7.) G
8.) K
9.) A
10.) i

when a circular dna gets underrotated by the action of cellular enzymes, the dna is said to exhibit negative supercoiling. positive supercoiling. relaxed state. bubbling.

Answers

When a circular DNA gets underrotated by the action of cellular enzymes, the DNA is said to exhibit Negative supercoiling.

Negative supercoiling is a form of DNA underwinding in which the number of twists is less than what is predicted by the number of helical turns. This can be caused by enzymes that unwind DNA, or by DNA-binding proteins that bend or distort the molecule.Negative supercoiling makes DNA more compact and can affect its function, such as by affecting the binding of proteins. The double helical, right-handed type of DNA is called positive supercoiling. It is tightly twisted in a right-handed manner until a knot-like helix forms. DNA has a left-handed, double helical structure known as negative supercoiling. Negative supercoil' s knot has a high twisting stress despite the helix being underwound and having low twisting stress.

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Hey guys can you guys help just to be sure im doing this right

Hey guys can you guys help just to be sure im doing this right

Answers

Answer:

option C. x  \(\leq\) 8

Explanation:

x + 5 \(\leq\) 13

x + 5 -5 \(\leq\)  13 -5 ........subtract by 5 on both sides

x  \(\leq\) 8

the cytoskeleton is the means by which (choose all that apply) group of answer choices all of the answers are correct water is taken in by pinocytosis a vesicle is formed at the cell membrane surface vesicles, vacuoles, and lysosomes are moved around the cell interiors water diffuses across a membrane proteins are manufactured at the cell nucleus

Answers

The cytoskeleton is a dynamic network of protein filaments that provides structural support to cells and plays a role in various cellular processes. Therefore the correct option is option B.

Meaning:

The cytoskeleton is responsible for moving vesicles, vacuoles, and lysosomes around the cell interiors. This is known as intracellular transport, and it is necessary for normal cellular function.

By giving structural support to the cell membrane, the cytoskeleton also maintains cell shape and integrity. This is critical for several cellular activities, including cell division and migration.

Furthermore, the cytoskeleton participates in the uptake of extracellular fluids and chemicals via a process known as pinocytosis. The cytoskeleton also aids in the movement of organelles within the cell, such as mitochondria and peroxisomes.

The cytoskeleton, on the other hand, is not directly involved in the diffusion of water across a membrane or the production of proteins at the cell nucleus. Therefore the correct option is option B.

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Watersheds may be contaminated by fertilizers and other pollutants. When these substances enter a waterway, they can cause algal blooms, which are rapid overgrowths of algae. When the algae die, the decay uses up a large portion of dissolved oxygen. Declining oxygen levels can then cause large die-offs of animals in the waterway. What will an algal bloom in a watershed most likely cause?

Answers

Completed options

A)A decrease in the watershed’s biodiversity, which will reduce its ability to supply clean and safe drinking water.

B)A decrease in the watersheds ecosystem diversity, which would improve its ability to supply large volumes of water.

C)An increase in the watersheds genetic diversity, which would reduce its ability to supply clean and safe drinking water.

D)An increase in the watersheds species diversity, which would improve its ability to supply large volumes of wate

Answer:

)A decrease in the watershed’s biodiversity, which will reduce its ability to supply clean and safe drinking water.

Explanation:

This sequnces of events is called  Eutrophication. It is the process of washing of  nutrients salts e.g., (NPK) into aquatic bodies which leads to change in the  ecosystem structure of the  aquatic bodies with the boom in algae growth, and drop in O2.

The cut in oxygen availability  in the aquatic bodies , leads to death of the fauna and flora.Theses are the varieties of life in this habitat.(biodiversity).

With the an increase in the death of these inhabitants(flora and fauna)couple with the activities of the (decomposers) the water bodies becomes dirty and unfit for drinking.

Besides as the pathways of the  watershield  ecosystem  as it filters the these polluted  water may be blocked by the dead organic matter from the flora and fauna. Thus A is the best.  

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