Answer: False - both organisms work together to help each other
Answer:
false
Explanation:
do human eggs only have an X chromosome
Answer:
Yes, human eggs (also known as ova or female gametes) only have an X chromosome. This is because human females have two X chromosomes in their cells, and during meiosis, when the egg is formed, one of the X chromosomes pairs up and separates, leaving only one X chromosome in the mature egg cell. In contrast, human sperm can have either an X or a Y chromosome, as males have one X and one Y chromosome in their cells.
which areas of the cortex undergo substantial structural change in adolescence? (select all that apply)
Some of the areas that undergo substantial structural change during adolescence include:
Prefrontal cortexTemporal cortexParietal cortexFrontal cortexAdolescence is a period characterized by various changes that occur within the human body, including the brain. The brain undergoes various changes, including structural changes in different areas of the cortex.
The prefrontal cortex, for instance, is a critical part of the brain that matures throughout adolescence. During adolescence, the prefrontal cortex undergoes extensive structural changes that help the brain to become more efficient in handling complex cognitive tasks.
The temporal cortex is another critical part of the cortex that undergoes substantial structural changes during adolescence. This area is responsible for handling sound recognition, including speech and music. In adolescents, the temporal cortex undergoes extensive structural changes that help in improving language proficiency.
The parietal cortex is yet another area of the cortex that undergoes substantial structural changes in adolescence. This part of the cortex is responsible for spatial perception, including depth, and plays an essential role in visual and auditory processing.
Finally, the frontal cortex is another critical part of the cortex that undergoes substantial structural changes during adolescence. This area is responsible for controlling executive functions, such as attention, impulse control, decision-making, and emotional regulation.
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Which areas of the cortex undergo substantial structural change in adolescence? (select all that apply)
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which type of protein coat will you find on the outside of a vesicle that is targeted to the er at the time that it buds off the golgi apparatus
The type of protein coat you will find on the outside of a vesicle that is targeted to the ER at the time that it buds off the Golgi apparatus is the COPII protein coat.
COPII protein coats are used in vesicular transport from the rough endoplasmic reticulum (ER) to the Golgi apparatus, where they coat vesicles that bud from the transitional endoplasmic reticulum (ER) and are transported to the cis-Golgi.
The endoplasmic reticulum (ER) is a cell organelle that plays a role in a variety of cellular activities. The endoplasmic reticulum is made up of two distinct regions, the rough endoplasmic reticulum, and the smooth endoplasmic reticulum. The rough endoplasmic reticulum is distinguished from the smooth endoplasmic reticulum by the presence of ribosomes on its surface.
The Golgi apparatus, also known as the Golgi complex, is another organelle in eukaryotic cells. The Golgi apparatus receives and processes proteins and lipids synthesized in the endoplasmic reticulum. It then sorts and distributes the processed molecules to their proper locations inside and outside the cell.
The COPII protein coat is found on the outside of a vesicle that is targeted to the ER at the time that it buds off the Golgi apparatus. COPII coats vesicles that bud from the transitional endoplasmic reticulum and are transported to the cis-Golgi.
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what effect would applying slight pressure to the common carotid artery have on your heart rate and blood pressure?
Answer:
Pressure on this artery would cause a decrease in blood pressure however it would cause an increase in heart rate
The effect would have to apply slight pressure to the common carotid artery on your heart rate and blood pressure is vаsoconstricton of the renаl аrtery would decreаse both blood flow аnd blood pressure аt the kidney.
Pressure on the common carotid artery would decrease blood pressure at the baroreceptors in the carotid sinus. This decrease would cause a decreased frequency of action potentials along the glossopharyngeal cranial nerve (IX) to the medulla oblongata and more sympathetic impulses would be sent to the heart. The net result would be an increase in the heart rate.
In response, the kidney would increаse the аmount of renin it releаses, which in turn would leаd to аn increаse in the level of аngiotensin II. The аngiotensin II would bring аbout increаsed blood pressure аnd increаsed blood volume.
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in the example of interdomain communication between rhizobium species and leguminous plants, the advantage of the successful interaction for the plant is .
In the example of interdomain communication between Rhizobium species and leguminous plants, the advantage of the successful interaction for the plant is that it enables the plant to fix atmospheric nitrogen into ammonia.
The Rhizobium species have a symbiotic relationship with the leguminous plant roots, which allows the nitrogen-fixing bacteria to inhabit the plant's root nodules, forming the root nodule symbiosis. The legume plants provide the
Rhizobium species with carbon and energy sources in the form of sucrose and/or other organic compounds, while the bacteria help the plant to convert atmospheric nitrogen into ammonia. The ammonia produced is then converted to ammonium ions by the plant's own enzymes, which is used to synthesize amino acids and other compounds essential for the plant's growth and development.
The plant can also use the ammonia to make nitrogenous fertilizers, which can be stored in its leaves, stems, and roots for later use. Thus, the successful interaction between Rhizobium species and leguminous plants helps the plant to fix atmospheric nitrogen into ammonia, which is essential for its growth and development.
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many bacteria that are able to metabolize citrate (as seen in the citric acid cycle) produce negative results on the citrate slant test. why? be specific.
Many bacteria that can metabolize citrate produce negative results on the citrate slant test because they are unable to use citrate as the sole carbon source.
The citrate slant test is a test to determine if an organism is capable of using citrate as its sole carbon source. Bacteria that are capable of using citrate will grow on the slant, whereas bacteria that are not capable of using citrate will not grow on the slant.
The citrate slant test is typically used to differentiate between members of the Enterobacteriaceae family of bacteria. Bacteria that are capable of using citrate as the sole carbon source will be able to break down the citrate, producing carbon dioxide and ammonia.
The carbon dioxide will then react with the sodium in the medium to form sodium carbonate, which will cause the pH of the medium to increase.
The increase in pH will cause the bromthymol blue in the medium to turn blue, indicating a positive result.
However, bacteria that are not able to use citrate as the sole carbon source will not be able to break down the citrate and will not produce carbon dioxide or ammonia.
Therefore, the pH of the medium will not increase, and the bromthymol blue will not turn blue. As a result, a negative result will be produced.
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when comparing the large flightless birds (rheas, emus, and ostriches), what was the major question?
When comparing the large flightless birds (rheas, emus, and ostriches), the major question is the differences between them. All three of these birds are found in different parts of the world, with rheas being native to South America, emus to Australia, and ostriches to Africa. Furthermore, there are notable differences in their physical characteristics, most notably size.
Ostriches are the largest, weighing up to 300 pounds, while rheas and emus weigh much less. Additionally, the two types of rheas—greater and lesser—are further distinguished by the color of their wings. Lastly, the behaviors of these birds also vary. Ostriches can run up to 45 mph and use their powerful legs for defense, while rheas and emus cannot run as fast and use their strong feet and claws to ward off predators. All three species are omnivorous, though they have different diets.
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a platelet determination was performed on an automated instrument and a very low value was obtained. the platelets appeared adequate when estimated from the stained blood film. the best explanation for this discrepancy is:
An automated equipment was used to do a platelet determination, and a very low number was discovered. When calculated from the stained blood film, the platelets seemed sufficient. D2 mice offer the most plausible reason for this disparity.
RBC and PLT counts may be performed using an automated hematology analyzer, however when D2 mouse samples are being utilized, a suitable technique should be used. Red blood cell, mouse, platelet, automated hematology analyzer, and keywords.
When platelets are stimulated, they become spherical with a hypogranular cytoplasm and discharge tiny particles. This may lead to the erroneous identification of platelets when utilizing automated hematology analyzers owing to their distorted appearance. An EDTA sample has an automated platelet count of 58x10^3 uL. The blood smear's platelet estimation seems normal.
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Why can’t a forklift lift a palette of rocks
but you cannot
A forklift cannot lift a pallet of rocks because the weight of the rocks exceeds the maximum lifting capacity of the forklift. The lifting capacity of a forklift depends on its size and design.
A forklift is a powered industrial truck that is designed to lift and move heavy loads. Forklifts are commonly used in warehouses, construction sites, and manufacturing facilities to lift and move materials. Forklifts are designed to carry loads of a specific weight capacity. The maximum weight capacity of a forklift depends on its size and design, and it is important to ensure that the forklift is not overloaded. Overloading a forklift can cause it to tip over or lose balance, which can be dangerous for the operator and others nearby. When a forklift tries to lift a load that exceeds its maximum capacity, it can cause the forklift to become unstable and tip over. Therefore, it is important to ensure that the load being lifted does not exceed the maximum weight capacity of the forklift.
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Which body part on humans are pigs' hooves analogous to?
Please Answer This Quick I'll Give Brainlist
Splints or surgery are used to treat the broken bone in patient A. Insulin medicines are used to treat diabetic peripheral neuropathy in patient B. Painkillers are being used to treat the muscle sprain in patient C.
After a bike accident, Patient A had a direct injury to the bone.
Surgery or the use of splints to immobilize broken bones and speed recovery are the two main options for treating bone fractures.
Diabetic patient B came to the hospital complaining of tingling and numbness in his right foot. This is a nerve impairment or harm brought on by the underlying sickness.
Plan of treatment: This entails utilizing insulin to manage blood sugar levels and prescription drugs to treat nervous system problems.
Patient C reported tightness and soreness in the back of her leg after suffering a muscle sprain during a track event.
Painkillers, ice, or splinting should all be part of the treatment approach
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the dna from one source forms a double-stranded region with the dna from another source during what process?
Answer: Replication
Explanation:
The process is called DNA hybridization, and it occurs when two strands of DNA from different sources interact with each other. During this process, each strand of DNA bonds with a complementary strand from the other source, forming a double-stranded region. This interaction is enabled by the fact that DNA is a double helix, meaning that each strand can bind with another strand that has the same base sequence in reverse order.
The double-stranded region created during DNA hybridization is called a hybrid, and it is the basis for many of the genetic processes in living organisms. In addition, the double-stranded region created during DNA hybridization can be used to produce new genetic sequences through a process called recombination.
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meristems can differentiate into each of the tissue systems of a plant. which phenomenon does this explain?
The phenomenon that meristems can differentiate into each of the tissue systems of a plant is called totipotency.
What are meristems?
The meristem is a region of a plant where growth occurs. It is a group of undifferentiated cells that are capable of division and differentiating into various plant organs. It is present in the roots and shoots of a plant. The meristem is critical to the plant's development, as it is responsible for creating new cells that will eventually form different organs in the plant.
Meristematic cells have the unique capacity to divide and differentiate into different cell types, and they also have the ability to regenerate a whole plant from a single cell under specific conditions.
The phenomenon that meristems can differentiate into each of the tissue systems of a plant is called totipotency. This means that the undifferentiated cells in the meristem have the potential to develop into any type of tissue found in the plant. Thus, meristems are totipotent.
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WILL GIVE BRAINLY
explain the life cycle of a star with a mass of 10,000
The life cycle of a star with a mass of 10,000 will begin with the formation of a protostar within a cloud of gas and dust.
Life cycle of a starA star with a mass of 10,000 times that of the Sun will follow a life cycle that begins with the formation of a protostar within a cloud of gas and dust.
As the protostar accretes more mass, it will eventually reach a critical point and ignite fusion reactions, becoming a main-sequence star. After several million years, the star will exhaust its hydrogen fuel and expand, becoming a red giant.
In this phase, the star will fuse heavier elements in its core, leading to the formation of a dense core of iron. Once the core reaches a critical mass, it will collapse in a supernova explosion, leaving behind either a neutron star or a black hole. The surrounding gas and dust will be expelled into space, where it may eventually form new stars and planets.
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forensic scientists are considering doing dna tests on many pieces of evidence they currently have in their lab. what item would be least likely to produce suitable dna test results?
Answer:
Items that have been exposed to extreme heat or chemicals, such as burned materials or heavily bleached clothing, would be least likely to produce suitable DNA test results. Additionally, items that have been degraded over time or have been contaminated by other substances may also have limited DNA test results.
Answer:
a finger that was stored in formaldehyde
Explanation:
I took the final, good luck kiddos :)
Put the steps of binary fission in order from first (1) to last (4).
DNA molecules attach to the cell membrane.
Two new, identical cells are produced.
DNA is copied.
The membrane elongates and pinches off.
PLEASE HELP!!!
Answer:
1. DNA is copied
2. DNA molecules attach to the cell membrane.
3. The membrane elongates and pinches off
4. Two new, identical cells are produced.
Explanation:
parent cell dna is copied.
replicated chromosomes attach to the cel membrane.
chromosomes are separated and pull in opposite directions.
the cell membrane pinches inward.
the cell divide.
two daughter cells form.
s you read your textbook, note the similarities and differences between the different land biomes and aquatic ecosystems. there will be more than 1 biome that fits into each feature, and each biome can be used more than once. record your work in the table.
These are environments found in water, either freshwater or marine. Examples include lakes, rivers, estuaries, and coral reefs.
What kind of environment found in water?
As I cannot view the specific textbook or table you are using, I will provide general information about the similarities and differences between land biomes and aquatic ecosystems. Please refer to your textbook and adjust the information accordingly.
Land biomes: These are large regions defined by their climate, vegetation, and animal life. Some examples include forests, grasslands, and deserts.
Similarities: Land biomes share features such as soil type, precipitation levels, and temperature ranges. They also contain diverse plant and animal life adapted to the specific conditions.
- Differences: Land biomes differ in climate, vegetation, and animal life. For example, forests are characterized by a high density of trees, while grasslands have predominantly grasses and deserts have little vegetation.
Aquatic ecosystems: These are environments found in water, either freshwater or marine. Examples include lakes, rivers, estuaries, and coral reefs.
Similarities: Aquatic ecosystems share features such as water depth, salinity, and temperature. They also contain diverse aquatic plants and animal life adapted to the specific conditions.
Differences: Aquatic ecosystems differ in the type of water (freshwater or marine), water movement, and available sunlight. For example, lakes are still bodies of freshwater, while rivers have flowing freshwater. Estuaries are where freshwater meets marine water, and coral reefs are marine ecosystems with high biodiversity.
To record your work in the table, you can list each biome and aquatic ecosystem, then note their similarities and differences based on the features mentioned above. Please refer to your textbook for specific examples and more detailed information.
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if the offspring generation of problem 1 is crossed with the tall plant from a tall lineage, what will be the phenotype(s) and in what ratios for the offspring?
when a pure tall plant is crossed with a pure short plant, all of the resulting offspring are tall. When the offspring from that cross is self-fertilized, the phenotypic ratio is 3:1.
When the offspring generation of problem 1 is crossed with the tall plant from a tall lineage, the following phenotypes and ratios for the offspring are produced. The phenotypes are TT and Tt with a ratio of 1:1, respectively. Thus, the offspring generation will have a 1:1 ratio of TT to Tt.
Tallness is a dominant characteristic that appears to be inherited by simple Mendelian genetics. It is dominant over shortness and is designated by a capital T. On the other hand, shortness is a recessive trait that is designated by a lowercase t.
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the adaptations of archaebacteria to extreme modern-day environments suggest they were among the earliest organisms on the earth. explain this statement.
Archaebacteria is a group of bacteria that was found in extreme environments like hot springs, salt marshes, and volcanic vents.
It was discovered that these bacteria are capable of surviving in conditions that were toxic to other organisms.
The adaptations of archaebacteria to extreme modern-day environments suggest that they were among the earliest organisms on the earth. For example, they have developed a cell wall that is more robust than that of other bacteria.
This cell wall helps them to withstand the high temperatures and pressures that are present in volcanic vents and hot springs. They also have unique enzymes that can withstand the high temperatures that are found in these environments.
In addition, archaebacteria have developed a unique metabolism that allows them to utilize resources that are not available to other organisms. This metabolic process is known as chemosynthesis.
It involves using inorganic compounds like hydrogen sulfide, ammonia, and iron to produce energy. This process is essential for archaebacteria survival in environments where sunlight and organic matter are not available.
All of these adaptations suggest that archaebacteria were among the earliest organisms on the earth. They developed these adaptations when the earth was still a hostile place, and only a few organisms could survive in extreme conditions.
Thus, archaebacteria's adaptations to extreme modern-day environments suggest they were among the earliest organisms on the earth.
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xotoxins are . proteins. only released after a cell is damaged or lysed. enzymes. secretions that only target nervous tissue. lipopolysaccharides.
Exotoxins are proteins.
Exotoxins refer to harmful proteins produced and released by some bacteria that damage host cells and can cause disease. They can be released by bacterial cells without the need for the bacteria to be lysed or killed, which makes them distinct from endotoxins. They can also affect a variety of host cells and tissues, and some can even be specific to particular cells and target tissues.
In addition, exotoxins can be split into different types based on their mode of action. For example, some exotoxins target nerve cells, while others target cells involved in the immune system, such as T cells or B cells. They can also be categorized based on their molecular structure or function. Regardless of their mode of action, all exotoxins are harmful and can cause disease or other health issues in humans or other animals.
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the gel electrophoresis apparataus creates an electrical field with positive and negative poles at each end. were the dyes tested postively or negatively charged? how do you know?
The dyes used in gel electrophoresis are usually negatively charged because they move towards the positive electrode. The positively charged particles are attracted to the negative electrode. Hence, it can be inferred that the dyes tested were negatively charged in gel electrophoresis.
In the gel electrophoresis apparatus, the dyes are tested positively or negatively charged. It is known that the apparatus creates an electrical field with positive and negative poles at each end. The charged particles are separated based on the strength of the charge they possess.
The gel electrophoresis is a technique that helps in the separation of DNA or RNA molecules based on their size and charge. The samples are loaded into a well that is created in a gel and exposed to an electric field.
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What important events take place during prophrase 1
calculate the number of nucleotides present in the mrna strand if the polypeptide synthesised has a length of 120 amino acids.
The number of nucleotides present in the mRNA strand if the polypeptide synthesized has a length of 120 amino acids is 360.
There are 3 nucleotides in a codon. A single amino acid is determined by a codon. If we know the length of the polypeptide chain, we can calculate the number of codons in the mRNA that coded for the polypeptide, and then calculate the number of nucleotides.
To determine the number of codons that code for the polypeptide, we use the following equation:N = a number of amino acidsL = length of the polypeptide chainN = LTo calculate the number of nucleotides in the mRNA, we use the following equation:N = number of codons x 3N = L x 3N = 120 x 3N = 360Therefore, the number of nucleotides present in the mRNA strand if the polypeptide synthesized has a length of 120 amino acids is 360.
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In which part of the male reproductive system do the sperm mature?
A. The vas deferens
B. The epididymis
C. The urethra
D. The seminiferous tubules
Answer:
The correct answer is B. The epididymis
Complete the chemical formula for this substance: H+ + H2O -------->
1. H2O+
2. Ho3+
3. h+
4. h3o+
will mark branliest!!
Answer:
H2+OH observe and see it correctly
Complete a cross between a heterozygous horse and homozygous -dominant horse.
Were your results the same as the cross between a heterozygous horse and a
homozygous-recessive
horse?
Pleaseeeee help me
16. According to the passage set, which TWO events MOST likely led to the extinction of the dodo?
A. Over time, pigeons evolved into what is known as the dodo.
B. Dodos ate small stones to help with digestion.
New species introduced to the island began hunting the dodo.
D. The dodo laid single eggs in nests on the ground.
Answer: It's C.
Explanation: The dodo once lived on an uninhabited island where there were no predators, so they evolved and became flightless and slow.
Then one day, the Dutch came and brought dogs with them. The dodos were too slow. The eggs got stolen and eaten, dodos were killed, and the dodos didn't repopulate fast enough, so they went extinct.
what could you infer if scientists discover that south america split from africa well before the evolution of the common ancestor of all modern primates?
This would mean that the common ancestor of all modern primates did not exist in South America at the time of the split and that the primates in South America evolved from a different lineage.
Evolution explained.If scientists discover that South America split from Africa well before the evolution of the common ancestor of all modern primates, it would suggest that the primates in South America evolved independently from those in Africa. This would mean that the common ancestor of all modern primates did not exist in South America at the time of the split and that the primates in South America evolved from a different lineage.
This finding could have important implications for our understanding of primate evolution and biogeography. It would suggest that primates have a more complex evolutionary history than previously thought, and that their distribution and diversification may have been influenced by a variety of factors, including continental drift, climate change, and ecological interactions.
Additionally, it could help to explain some of the unique characteristics of the primates in South America, such as the presence of the platyrrhine dental formula (2133) and the absence of a number of primate groups that are found in other parts of the world. It could also shed light on the processes that drove the evolution of primates in both South America and Africa, and how these processes may have influenced the diversification of primates more broadly.
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I'LL GIVE 45 POINTS AND BRAINLIEST ! PLEASE ANSWER SOON !
Answer:
1. a sequence of DNA responsible for coding a protein = gene
2. the complete range of alleles an organism carries for a specific trait = genotype
3. an allele that determines the outward trait of a heterozygous organism = dominant
4. the observable characteristics of an organism = phenotype
Hope it helped! :)
Answer:
a sequence of DNA responsible for coding a protein = gene
The complex range of alleles an organism carries for... = genotype
an allele that determines... = dominant gene
the observable characteristics= phenotype
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>ExplainFirst one
genetic, the sequence of nucleotides in deoxyribonucleic acid (DNA) and ribonucleic acid (RNA) that determines the amino acid sequence of proteins
__________________________________________________________
Second one
The combination of alleles that an organism carries constitutes its genotype. If the paired alleles are the same, the organism's genotype is said to be homozygous for that trait; if they are different, the organism's genotype is heterozygous
__________________________________________________________
Thierd one
an allele that determines... = dominant gene
__________________________________________________________
Fourth one
The term "phenotype" refers to the observable physical properties of an organism; these include the organism's appearance, development, and behavior. An organism's phenotype is determined by its genotype, which is the set of genes the organism carries, as well as by environmental influences upon these genes
. gap junctions are important in smooth muscle. when absent, as in the iris of the eye, what new characteristic does the smooth muscle fibers take on?
Gap junctions are important in smooth muscle. When they are absent, as in the iris of the eye, the smooth muscle fibers will exhibit an independent behavior.
What are gap junctions?Gap junctions are protein channels that connect the cytoplasm of two adjacent cells. In animals, gap junctions are found in almost every tissue and are particularly abundant in muscle and nervous tissue. Gap junctions are made up of protein subunits that connect adjacent cells, allowing molecules and ions to flow freely between them, creating a direct link between them. Gap junctions have been linked to various physiological processes, including regulation of cell growth and differentiation, metabolism, and electrical and chemical signaling.
How are smooth muscle fibers affected when gap junctions are absent?Smooth muscle fibers are affected when gap junctions are absent in a number of ways. Gap junctions are important in smooth muscle because they allow adjacent cells to contract in synchrony. When the gap junctions are absent, smooth muscle fibers exhibit independent behavior. The absence of gap junctions causes smooth muscle fibers to be more excitable, allowing them to contract in response to different stimuli. The fibers also tend to have a longer duration of contraction, which can lead to prolonged muscle tone or spasm.
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