Answer:
Molecules from food and molecules of oxygen move from the mouth and the nose to cells of the body through a series of blood vessels, including veins, arteries, and microscopically small blood vessels (capillaries), that extend throughout the body.
sensory receptors are specialized structures that turn the energy of stimuli into electrochemical signals that the brain can understand. this is known as
Numerous stimuli of all kinds and origins are taken in and converted into the action potentials of a nervous system. Sensory transduction is the name of this process.
What essential tenets govern sensory transduction?At the sensory receptors, sensory transduction begins. Each sensory system contains specialized cells that can pick up on environmental cues. Light is detected by photoreceptors, tastes and smells are detected by chemical sensors in the tongue and nose, touch is detected by mechanoreceptors, and sound is detected by hair cells.
What exactly is sensory transduction, and does it occur during vision?In humans and other vertebrates, rod and cone cells in the retina of the eye detect light to produce nerve impulses known as "visual phototransduction," which is a sensory transduction process.
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unlike simple diffusion, facilitated diffusion requires energy expenditure by the cell.
Facilitated diffusion is a passive process, thus the cell doesn't have to expend any energy on it.
Does a cell need energy for assisted diffusion or diffusion that occurs naturally?Simple diffusion does not need energy, whereas assisted diffusion needs an ATP source. B. In contrast to facilitated diffusion, which can move materials both with and against a concentration gradient, simple diffusion can only move material in the direction of a concentration gradient.
What makes aided diffusion different from simple diffusion?Simple diffusion occurs when a substance diffuses between phospholipids; enhanced diffusion occurs when specific membrane channels are present. Facilitated diffusion is typically used to enter and exit cells for charged or polar molecules that cannot fit between the phospholipids.
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biological magnification is a natural process when a persistent material is taken-up by primary producers because:
The process of some chemicals building up in living things to a concentration that is higher than what occurs in the inorganic, non-living world is known as "biomagnification" or "biological magnification."
What is meant by biomagnification ?Biomagnification is the accumulation of a chemical by an organism as a result of exposure to both food and water, resulting in a concentration that is higher than what would have been expected from equilibrium and higher than what would have occurred with only water exposure.
The accumulation of a certain material in the bodies of creatures at various trophic levels of a food chain is known as biomagnification. The buildup of the chemical DDT in zooplanktons is one instance of biomagnification in action. These zooplanktons are consumed by little fish.
The process of some chemicals building up in living things to a concentration that is higher than what occurs in the inorganic, non-living world is known as "biomagnification" or "biological magnification."
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Broadly speaking, how accurate are predictions of an individual’s various characteristics based on their genome sequence?- Highly accurate, since genotype controls the phenotype- Not accurate at all, because many traits are complex and because there are unknowns about the enviranment any individual has been exposed to- Somewhere in between "highly accurate" and "not accurate at all"
An individual's genotype and the environment they experience may not be sufficient to determine their phenotype.
Pedigree analysis can determine genotypes identify phenotypes, and predict how traits will be inherited in the future. Information from the pedigree allows us to determine how particular alleles are inherited: whether they are dominant recessive autosomal or sex-linked.
Refers to observable characteristics of an individual such as height eye color and blood type. A person's phenotype is determined by both genomic organization and environmental factors. Predict quantitative trait phenotypes as accurately as possible based on information such as genetic variation across the genome.
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early native americans used which distinctive tool to hunt large-bodied ice age mammals? a. mousterian points b. solutrean blades c. levallois flakes d. folsom points
Early native americans used which distinctive tool to hunt large-bodied ice age mammals folsom points.
Folsom points can be found all over North America and are dated between 9500 and 8000 BCE. When these artefacts were discovered in the early twentieth century, they raised questions about when the first humans arrived in North America. The popular belief of a time depth of about 3,000 years was clearly incorrect.
Clovis, a projectile point style dating back to 11,500 BCE, was discovered in 1932. Clovis points have been discovered in situ alongside mammoth skeletons. Folsom points were gradually replaced by Plano points of various Plano cultures in the Great Plains area.
Earth experienced drastic climate changes at the end of the last ice age, which significantly altered plant and animal biodiversity. These changes occurred in North America at the same time as humans arrived.
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Is knowing about the physical and chemical changes of food important for a molecular gastronomy chef? explain why or why not, using evidence from the passage.
Answers may differ, but everyone should agree that understanding how food changes physically and chemically is crucial for a molecular gastronomy cook.
What function does molecular gastronomy serve?Because it connects the social, artistic, and technical aspects of food and food preparation, molecular gastronomy is significant. Chefs and scientists can better understand why particular results occur by researching the science underlying various culinary techniques or widely utilized approaches.
What are the objectives of cooking using molecular gastronomy?As with any science, molecular gastronomy's primary goal is to identify novel occurrences and mechanisms. This explains why culinary precisions are so crucial because historically, cooks could see but not interpret events that required further investigation by scientists.
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2) would you expect dobutamine hydrochloride (below) to have a long duration of action and be orally bioavailable?
Dobutamine hydrochloride, a direct-acting inotropic drug, stimulates the beta-receptors in the heart as its main mechanism of action.
What is dobutamine used for?The Food and Drug Administration (FDA) has granted dobutamine approval for short-term use in individuals with reduced contractility brought on by heart failure or cardiac surgery that results in cardiac decompensation.Hypotension. Blood pressure precipitously dropping has occasionally been reported in connection with dobutamine medication. Usually, the blood pressure returns quickly to normal values after reducing the dosage or stopping the infusion.Dobutamine hydrochloride, a direct-acting inotropic drug, stimulates the beta-receptors in the heart as its main mechanism of action. It also has relatively minor chronotropic, hypertensive, arrhythmogenic, and vasodilatory effects.To learn more about Dobutamine hydrochloride refer,
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Two___ of the element sodium combine with one___ of the element chlorine to form the ___ sodium chloride
TWO atoms of the element sodium combine with two atom of the element chlorine to form the molecule sodium chloride
How sodium combine together to form sodium chlorideSodium chloride is chemical compound which is formed as a result of a chemical reaction between the element sodium and the element chlorine. The chemical equation for the reaction is given below:
2Na + Cl2 --- 2NaCl
From the equation above, we can see that one atom of sodium, we can see that 2 atoms of the element sodium combine with two atom of the element chlorine to form the molecule sodium chloride.
In conclusion, we can deduce from above that sodium chloride is a compound.
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what is the rate constant for the decay? b) if a fossil is found with only 18% of the ^{14}c maintained by living organisms, what is the age of the fossil? report
The property (quality) of fossils allows scientists to determine the relative ages of rock layers are fossils show change over time as species evolve.
What is the minimum age of a fossil?A living being that lived more than 11 thousand years ago is considered a fossil, that is, before the Holocene, which is the current geological epoch. Ancient remains or evidence, but less than 11,000 years old, such as sambaquis, are classified as subfossils.Chemistry is present in this process, more precisely the element Carbon. The dating of a fossil can be done based on the already known percentage of Carbon-14 (C14) in relation to Carbon-12 (C12) of living matter (without decomposition).The term fossil can be defined as the remains or the retained remnants of ancient species, or signs of their remains. Fossils are not the remnants of living organisms.They are stones. A fossil can save a whole organism or only a portion of one. Fossils can be formed from bones, shells, feathers, or leaves. The greater the age of the fossil located deep within the ground. It informs us about the time period and the uniqueness of the artifacts.The strata are layered one on top of the other, with the bottom layers being older in geological time and the top layers being more recent.To learn more about fossil refer to:
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The two groups of bacteria responsible for nitrogen fixation are found in Choose. And in the roots of Choose.
Leguminosae make up the roots of Choose.
What do microorganisms do?A few bacteria aid in food digestion, assist the body absorb vitamins, and eliminate disease-causing cells. Additionally, yogurt and cheese are produced using bacteria. However, you can get sick from contagious microorganisms. In your body, they multiply swiftly.
What is the name of the hazardous bacteria?Bacteria that harms us are considered bad bacteria. As pathogens, we refer to them. The environment may provide us with these. Vibrio cholerae is the bacteria that causes cholera, and it can be caught by consuming food or water that has been tainted with an infected person's feces, as well as by coming into close contact with them.
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match the structure to its function. a. mouth b. stomach c. rectum d. small intestine e. large intestine fat digestion is completed here.
Small intestine.
The small intestine has three elements: the duodenum, jejunum, and ileum. It helps to further digest meals coming from the belly. It absorbs vitamins (nutrients, minerals, carbohydrates, fats, proteins) and water from meals so they may be used by the frame. The small gut is a part of the digestive system.
The small intestine(small bowel) lies between the belly and the massive intestine (large bowel) and consists of the duodenum, jejunum, and ileum. The small gut is so known due to the fact its lumen diameter is smaller than that of the large intestine, even though it is longer in length than the big intestine.
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What is the name of the structure in the inner ear which serves to maintain a sense of equilibrium and orientation in space?.
Answer:
the vestibular apparatus
Explanation:
2. Explain the reaon for the difference in the ucce of China' and India' family planning campaign:
China's one-child policy has been successful in drastically slowing down population growth, but it has severely altered the country's demography.
Contrarily, India's population growth rate has adjusted spontaneously (aided by non-coercive family planning measures), avoiding these demographic distortions. Growth of a population's or a dispersed group's size is referred to as population. Actual worldwide demography population growth is about 83 million people per year, or 1.1% annually. [2] From 1800 to 2020, there will be 7.9 billion people on the planet. [3] According to projections from the UN, the world's population will reach 8.6 billion people by the middle of the 2030s, 9.8 billion by the middle of the 2050s, and 11.2 billion by the end of the 21st century.
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In the human body, stem cells in the bone marrow produce a variety of blood cells. What process produces these cells?
Answer:
hematopoiesis
The production and development of new cells in the bone marrow is a process called hematopoiesis. Blood cells formed in the bone marrow start out as stem cells. A stem cell (or hematopoietic stem cell) is the first phase of all blood cells.
Explanation:
can I have brainliest?
How do animals store their sugar for later?
Animals store sugar in form of glycogen in their liver or muscles for later.
How do animals store sugar?Plants and animals both use glucose as their main source of energy, which they break down via respiration.
The main sources of glucose in animals include the diet and process of gluconeogenesis while the primary source in plants is the process of photosynthesis.
Excess glucose in both plants and animals needs to be stored for future use. Animals store excess sugar in the form of glycogen while plants store excess sugar in the form of starch.
Both glycogen and starch are polysaccharides. Glycogen is stored in animals in the liver and skeletal muscles.
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if a sequence of codons on a dna strand is aac tag ggt what is the corresponding sequence in a strand of mrna
The corresponding sequence in a strand of mrna are:-
Adenine bonds with Thymine
Thymine bonds with Adenine
Cytosine bonds with Guanine
Guanine bonds with Cytosine
Deoxyribonucleic acid is a polymer composed of polynucleotide chains that coil spherical each one-of-a-kind to form a double helix. The polymer includes genetic instructions for the development, functioning, boom and replica of all seemed organisms and lots of viruses.
In all dwelling things, DNA is vital for inheritance, coding for proteins, and offering instructions for life and its tactics. Human cells commonly consist of 23 pairs of chromosomes, for a complete of 46 chromosomes in every cell.
Most DNA is positioned within the cell nucleus. Mitochondria are structures within cells that convert the power from meals right into a shape that cells can use.
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molecular biology binghamton how many cycles does it require to obtain the desired pcr product for the first time?
According to molecular biology the quantity of DNA used as an input and the intended PCR product yield. For a suitable yield, up to 40 cycles may be necessary if the DNA input is less than 10 copies.
The target sequence set by the primers starts to accumulate after three cycles. After 30 cycles, a PCR product single beginning molecule can yield many more as a copies of the desired sequence. The PCR product area in between the two primers has undergone one round of replication, resulting in two copies of the original gene region. The PCR product reaction may be continually cycles performed without the addition of additional enzyme since a heat-resistant polymerase is utilized.
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The brachialis muscle is the prime mover of elbow flexion, while biceps brachii assists. In other words, during elbow flexion brachialis is the ______ and biceps brachii serves as the ________.
Brachialis is the agonist during elbow flexion, and biceps brachii is the synergist.
What is elbow flexion?Elbow flexion occurs when your forearm moves toward your body by bending at the elbow. The inverse movement is elbow extension. The humerus, located in your upper arm, is one of the three bones involved in elbow flexion. ulna, on the forearm's little finger side.Elbow flexion involves the biceps brachii, brachioradialis, and brachialis muscles (bending). Elbow extension is controlled by the triceps (straightening the arm).The brachioradialis, brachialis, and biceps are the three elbow flexors involved in elbow flexion motion.Elbow flexion occurs when your forearm moves toward your body by bending at the elbow. Elbow extension is the inverse movement. The humerus, located in your upper arm, is one of three bones involved in elbow flexion.To learn more about elbow flexion refer to :
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light passes through the entire thickness of the neural layer of the retina to excite the photoreceptors.
True, light passes through the entire thickness of the neural layer of the retina to excite the photoreceptors.
The retina is the mild-touchy layer of tissue behind the eyeball. Pictures that come through the eye's lens are centered at the retina. The retina then converts those photos to electric-powered signals and sends them along the optic nerve to the brain.
The retina is a layer of photoreceptors cells and glial cells within the attention that captures incoming photons and transmits them alongside neuronal pathways as both electric and chemical indicators for the mind to understand a visual image.
The retina converts mild that enters into your eye into electric alerts your optic nerve sends to your mind which creates the photos you spot.
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HELP ASP I will give Brainiest!
A geranium is an example of a
narrow
A broad
B leafed plant.
Many nutrient cycles are coupled and changes in one cycle will affect another. This means that a change in the amount of carbon dioxide fixed is intimately affected by the amount of __________.
Since many nutrient cycles are interconnected, modifications to one cycle will have an impact on another. This implies that the quantity of nitrogen present in an ecosystem has a direct impact on changes in the amount of carbon dioxide fixed.
The movement of substance and energy between living things and the ecosystem's non-living components happens through a mechanism called the nutrient cycle. This happens because once plants and animals ingest nutrients from the soil, they die and decompose, releasing those nutrients back into the ecosystem.
Various Nutrient Cycles
Carbon cycle: It's believed that all living things are mostly composed of carbon.The nitrogen cycle: Nitrogen is necessary for life.The oxygen cycle: Oxygen is a necessary component of every living function.Water cycle or the hydrologic cycle:To learn more about ecosystem click here,
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The colorful wildflowers that pop up in the desert after it rains and quickly produce seeds before they die are an example of.
The colorful wildflowers that pop up in the desert after it rains and quickly produce seeds before they die are an example of Annual Plant.
An annual plant is one that goes through its whole life cycle, from germination to seed production, in a single growing season before dying.
Any plant that completes its life cycle in a single growing season is considered an annual plant . The phrase is typically used to describe blooming plants whose sole portion that persists from one growing season to the next is the dormant seed.
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what is one abiotic-abiotic interaction affected by the wildfires in California?
Answer:
Anthropogenic. Air pollution. Fire. Oil spills. Radioactive contamination.Climatological.Geophysical.Hydrological.Meteorological.during metamorphosis, echinoderms undergo a transformation from motile larvae to a fairly sedentary (and sometimes sessile) existence as adults. what should be true of adults, though not of larvae? adults should
The adults should have radial symmetry or something close to it.
What is metamorphism ?Through the process of metamorphism, previous rocks are transformed into new forms as a result of rises in temperature, pressure, and chemically active fluids. Igneous, sedimentary, and other metamorphic rocks may all be affected by metamorphism.
Although they began as a different kind of rock, metamorphic rocks have undergone significant alteration from their igneous, sedimentary, or previous metamorphic forms. When rocks are exposed to extreme temperatures, high pressures, hot mineral-rich fluids, or, more frequently, some combination of these conditions, metamorphic rocks are created.
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Although levels of cfcs in the atmosphere are much lower than those of co2 , cfcs are still potent greenhouse gases because they:_____.
Answer:
CFCs remain in the atmosphere for only a brief time. CFCs are more efficient at absorbing thermal radiation.
Explanation:
Chronic, non-communicable diseases account for disproportionate costs to the healthcare system. According to the world health organization, what percent of preventable deaths and disabilities occur in the americas related to chronic non-communicable diseases?
Noncommunicable diseases (NCDs) ki-ll 41 million people worldwide each year and account for 71% of all deaths worldwide. NCDs account for 5.5 million deaths in the Americas.
The main types of the non-communicable diseases are the cardiovascular diseases (such as the heart attack and the stroke), cancer, the chronic respiratory diseases (such as the chronic obstructive pulmonary disease and asthma), and the diabetes. Chronic diseases persist for the long time or they have recur. Some chronic diseases such as chronic hepatitis and HIV are caused by pathogens (bacteria). Others are caused by behavior (some heart diseases, cancer, etc.), environment (some types of asthma and cancer), or genetics (some birth defects and cancer). NCDs have four main risk factors: smoking, lack of physical activity, harmful alcohol use, and unhealthy diet.
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why did the results of the studies conducted at the hawthorne plant surprise elton mayo and his fellow researchers?
The results of the studies conducted at the hawthorne plant surprise elton mayo and his fellow researchers because : They marked the beginning of a concern for human relations in the workplace.
What was the experiment conducted at the hawthorne plant ?Beginning in 1924, the study at the hawthorne plant isolated two groups of employees in order to test the effects of different incentives on their output. Productivity increased as illumination levels were raised, but it also increased when lighting levels were reduced to standard or even below-standard in both groups.
It was initially anticipated that economic considerations would have the biggest impact on productivity. The results were unexpected: productivity rose, but not for economic reasons. Ultimately, researchers came to the conclusion that better worker attentiveness led to better job performance.
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Check all choices below that result in a transfusion reaction which could kill a person
A. Type B recipient and type A donor
B. Type AB blood recipient and type O donor
C. Type A blood recipient and type A blood donor
D. Type O recipient and type AB donor
E. Type B blood recipient and type O donor blood
Fever, chills, urticaria (hives), and itching are among the most typical warning signs and symptoms.
What happens when a transfusion reaction occurs?Certain symptoms go away with little to no treatment.However, signs of a more serious reaction include respiratory difficulty, a high fever, hypotension (low blood pressure), and red urine (hemoglobinuria).The patient's needs will determine how much and what percentage of blood is transfused.Red blood cells of types B or AB cannot be obtained if you have type A blood.Red blood cells of types A or AB cannot be obtained if you have type B blood.You can receive transfusions of O, A, B, or AB red blood cells if you have type AB blood.The majority of blood transfusions are performed at medical facilities or outpatient clinics.To learn more about a transfusion reaction occurs refer to:
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What is the purpose of using a logarithmic graph for graphing the movement of DNA? DNA moves in an exponential fashion DNA moves in a linear fashion. Your instructors want to make you do extra work The graph looks pretty
Responding to cases of skewness towards large values, or situations where one or a few points are significantly larger than the majority of the data comes first. The second is to display multiplicative or percent change.
How does DNA sequencing make use of graph theory?In this paper, a mathematical descriptor for similarity analysis based on diverse mutation phenomena is constructed using graph theory. For each DNA sequence, a weighted directed graph will be created because DNA sequences can hold a substantial amount of computational information.
What are the names of DNA graphs?Sequence diagram, Comparative genomics use bidirected graphs known as sequence graphs, often referred to as alignment graphs, breakpoint graphs, or adjacency graphs. The structure is made up of several graphs or genomes, where the edges and vertices correspond to the adjacencies between DNA segments and various segments in a genome, respectively.
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what will the genotypic ratio be of a monohybrid cross of two individuals who are heterozygous for a trait?
The ratio is 1:2:1 for the monohybrid cross of two individuals who are heterozygous for a trait.
Monohybrid go among natural breeding types obtains all dominant F1 which in flip produces F2 upon selfing and offers the monohybrid phenotypic ratio of 3 (dominant):1 (recessive). The monohybrid genotypic ratio is 1 homozygous tall: 2 heterozygous tall: 1 homozygous dwarf .1:2:1 ratio.
A go of F1 hybrids, heterozygous for a single trait that presentations incomplete dominance is expected to offer a 1:2:1 ratio amongst each the genotypes and phenotypes of the offspringmonohybrid go effects in a phenotypic ratio of 3:1 (dominant to recessive), and a genotypic ratio of 1:2:1 (homozygous dominant to heterozygous to homozygous recessive).
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