Answer:
glucose reacts with oxygen, forming ATP that can be used by the cell. Carbon dioxide and water are created as byproducts. In cellular respiration, glucose and oxygen react to form ATP. Water and carbon dioxide are released as byproducts.
Explanation:
Answer:glucose reacts with oxygen, forming ATP that can be used by the cell. Carbon dioxide and water are created as byproducts. In cellular respiration, glucose and oxygen react to form ATP. Water and carbon dioxide are released as byproducts.
Explanation:
What must be true about your parents if you have blood type O and neither of them have blood type O?
One of your parents must have blood type A, and the other must have either blood type B or blood type AB.
What is a blood type?
Blood type is a classification system used to describe the different types of blood based on the presence or absence of certain antigens on the surface of red blood cells. There are four main blood types: A, B, AB and O, and each blood type is either RhD positive (Rh+) or RhD negative (Rh-).
In this case, these blood types are the only ones that can combine to make all the other blood types. Blood type A is dominant, so at least one of the parents must have it for the child to have any of the other blood types. The other parent must have either blood type B or AB in order to create the other blood types.
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LIMITED TIME, HELP PLEASE!!!!!!!!!!!!!!
Which statement is most consistent with the theory of natural selection?
Select one:
Organisms learn to adapt to changes in their environment in order to survive.
Organisms that are best suited to survive will pass their traits to their offspring.
Different species breed with each other to produce offspring with new helpful characteristics.
Changes in the environment cause mutations that help organisms.
Organisms that are best suited to survive will pass their traits to their offspring.
This is the answer.
Histone genes, which evolve very slowly, would most likely be used to study
a. relationships among very similar species.
b. relationships within the same genera.
c. relationships among extinct organisms.
d. organisms that diverged long ago.
e. None of the above
Histone genes, which evolve very slowly, would most likely be used to study organisms that diverged long ago.
Histone genes, which develop very slowly, will be utilised to examine the connections between early and contemporary eukaryotic species. Given that histone genes are highly conserved and seldom diverge among distinct species, they can be an effective tool for establishing the evolutionary links between organisms that have undergone significant evolutionary separation.
By comparing the sequences of histone genes from various organisms, it is possible to examine the connections between various eukaryotic organism groups, including those of mammals, plants, fungi, and protists. This enables the construction of evolutionary trees that depict the links between various groups of creatures and the inference of the time at which various groups of organisms diverged from a common ancestor.
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A ball rolls 157 meters across the court in 68 seconds? What is the balls speed? Velocity?
The ball's speed is 2.3 m/s and its velocity is 2.3 m/s in the direction it is rolling.
What is the velocity of the ball, in terms of distance per time and direction?Velocity is a vector quantity that describes the rate of change of an object's position, including both its speed and the direction of its motion. To calculate the velocity of the ball, we need to know both the distance it traveled and the time it took to travel that distance.
In this case, the ball rolled 157 meters across the court in 68 seconds. To calculate the velocity, we divide the distance by the time, so 157 meters / 68 seconds = 2.3 meters per second.
It's important to note that the given information doesn't include the direction of the ball, so we can't know the direction of the velocity. We only know the magnitude of the velocity, which is 2.3 m/s.
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Explain why macromolecules (food) and water are essential to life at the cellular level.
Answer:
Gigantic molecules, called macromolecules, populate a cell and provide it with important functions for life. For example, macromolecules provide structural support, a source of stored fuel, the ability to store and retrieve genetic information, and the ability to speed biochemical reactions.
Which of the following is not true of the reaction catalyzed by RNA polymerases?
A) Template DNA is copied in the 3' to 5' direction. B) The 3'-hydroxyl group of the growing RNA strand is a nucleophile. C) The reaction is magnesium ion-dependent. D) U residues are incorporated into the RNA to pair with T residues of the template. E) The RNA molecule is synthesized in the 5' to 3' direction.
In the reaction catalyzed by RNA polymerase, the option U residues are incorporated into the RNA to pair with T residues of the template is not true(option D). RNA polymerases incorporate U residues in the RNA strand to pair with A residues in the template DNA during transcription.
RNA polymerase is an enzyme that catalyzes the transcription of DNA into RNA. During transcription, the enzyme reads the DNA template in the 3' to 5' direction, and synthesizes a complementary RNA strand in the 5' to 3' direction.
The growing RNA strand is synthesized by adding nucleotides one by one to the 3' end, and the 3'-hydroxyl group of the growing RNA strand acts as a nucleophile in this process.
Magnesium ions are required for the enzyme to function properly. RNA polymerases incorporate U residues in the RNA strand to pair with A residues in the template DNA during transcription, not T residues.
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how does rib cage works in our body for class 5
Answer:
When the lungs inhale, the diaphragm contracts and pulls downward. At the same time, the muscles between the ribs contract and pull upward. This increases the size of the thoracic cavity and decreases the pressure inside. As a result, air rushes in and fills the lungs.
Which of the following abdominal muscles is not a part of the anterior abdominal wall? a. quadratus lumborum b. rectus abdominis c. interior oblique d. exterior oblique
A muscle of the posterior abdominal wall is the quadratus lumborum. So, choice a is the right one.
The quadratus lumborum muscle, which is located dorsal to the iliopsoas and deep inside the belly, is a part of the posterior abdominal wall. This muscle arises from the pelvis to the lowest rib. This muscle, which originates from the iliac crest and inserts on the transverse processes of lumbar vertebrae one through five and the lower portion of the twelfth rib, is the deepest in the back.
As a result, this muscle extends the lumbar spine, stabilizes the lumbar region, can tilt laterally and can function as an accessory muscle for inspiration. Other muscles like the rectus abdominis, interior oblique, and exterior oblique form the anterior abdominal wall.
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Explain why B Thuringia sis is not a pathogen?
Explain why cancer is not a pathogen?
A pathogen is a type of microorganism that causes disease in its host.
B Thuringia sis is not a pathogen because it is a species of bacteria that is used as a biological pesticide to control certain pests, not a disease-causing organism.
Cancer is not a pathogen because it is not an infectious agent; it is a group of diseases caused by abnormal cell growth.
What do you mean by cancer?
Cancer is basically a group of diseases involving abnormal cell growth with the potential to invade or spread to other parts of the body. These are caused by changes in DNA of the affected cells. Symptoms vary depending on the type of cancer, but can include pain, fatigue, weight loss, and changes in appetite.
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After playing in an old shed, two boys tell their mother that they hurt all over. She checks and finds that they both have fevers. One says that he is dizzy and his head hurts, while the other says he thinks he might vomit. Wondering what the boys have gotten into, their mother seeks medical help. After running tests, the doctor informs her that the boys have managed to pick up a hantavirus. It is a very serious strain, Sin Nombre, and they must get treatment straight away. Considering the boys’ situation, where do they MOST likely live?
A.
Hantaan, Korea
B.
Taos, New Mexico
C.
Seoul, Korea
D.
Gaithersburg, Maryland
Describe a cell membrane using the following terms: hydrophilic, hydrophobic, heads, tails, phospholipid bilayer, proteins
All cells have a cell membrane, also called as plasma membrane, that separates the interior of the cell from the exterior of the cell.
Explain structure of cell membrane.A phospholipid bilayer makes up the cell membrane. Phospholipids are lipid molecules with two fatty acid tails and a phosphate group head. A phospholipid's hydrophilic phosphate group head and hydrophobic tail are opposites of one other. In contrast to the tail, the phosphate group is drawn to water, according to this. The cell membrane primary roles include: defending the cell from incoming infections and physical harm, the direction of cell growth is managed and regulated by the cell wall, giving the cell its strength, supporting its structure, and preserving its shape, stores carbohydrates for use in plant growth, particularly in seeds, serving as a storage unit, smaller molecules can freely pass through it and enter.
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4. Predict: In the Caribbean, water temperatures typically range from 24 °C to 30 °C. What do you think might happen if temperatures rise much higher than 30 °C?
If the temperature of the ocean gets higher, then water will evaporate more quickly, which means the sea is creating more powerful storms.
What is the effect of temperature on the ocean?If the temperature rise will be much more severe weather and hurricanes. This will happen due to warmer water is quicker to evaporate, which means the sea will create more powerful storms.
It will also cause the eradication of the coral reefs. They will be unable to grow and begin to die.
Therefore, if water temperatures typically range from 24 °C to 30 °C, but rise much higher than 30 °C, then the sea is creating more powerful storms.
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which statement describes a difference between prokaryotic and eukaryotic cells
statement that best describes the difference between prokaryotic and eukaryotic cells: the presence of membrane-bound organelles in eukaryotic cells indicates that they are more complex than prokaryotic cells.
What is the significance of the eukaryotic cell compartment?The eukaryotic cell is divided into many compartments, such as the cell organelles, which are preset in the form of compartments such as the mitochondria, the nucleus, the peroxisome, etc., and each organelle contains specific enzymes and pH.
Hence, the statement that best describes the difference between prokaryotic and eukaryotic cells: the presence of membrane-bound organelles in eukaryotic cells indicates that they are more complex than prokaryotic cells.
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The question is incomplete, the complete question is the below
Which statement best describes a difference between prokaryotic cells and eukaryotic cells? *
1 point
A The presence of both DNA and ribosomes in prokaryotic cells indicates that they are more complex than eukaryotic cells.
B The larger size of prokaryotic cells indicates that they are more complex than eukaryotic cells.
C The presence of membrane-bound organelles in eukaryotic cells indicates that they are more complex than prokaryotic cells.
D The larger size of eukaryotic cells indicates that they
Match each cellular component with the correct cell type: prokaryote, eukaryote, or both.
Prokaryote
Prokaryotes have a nucleoid. Eukaryotes have a nucleus and organelles.
Both prokaryotes and Eukaryotes contain ribosomes, cytoplasm, and cell membrane.
Prokaryotes:Has a nucleoid - the irregularly shaped region which consists of the genetic material is known as the nucleoid. But the nuclear membrane is not present in the prokaryotic cells as it is present in the eukaryotic cells.
Eukaryotes:Has a nucleus - The genetic material in the eukaryotic cells is present in the nucleus. In prokaryotes, the genetic material is free in the cytoplasm. There is no distinct organelle separating the genetic material.
Has organelles - The eukaryotic cells consist of different cell organelles which are not present in the prokaryotic cells. The cell organelles present in eukaryotic cells include - Endoplasmic reticulum, Mitochondria, lysosomes, Golgi apparatus, nucleus, ribosomes, etc.
Both prokaryotes and Eukaryotes:Contains ribosomes - Both prokaryotic and eukaryotic cells are involved in protein synthesis. Hence, both cells contain ribosomes. The ribosomes in prokaryotes are in the 70s and the eukaryotes' ribosomes are in the 80s.
Has a cytoplasm - The material in the living cells which includes the cell organelles. The fluid part of the cell without the nucleus is known as the cytoplasm. The cytoplasm is present in both prokaryotic and eukaryotic cells.
Have cell membrane - Both the prokaryotic and Eukaryotic cells have a cell membrane.
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Match each cellular component with the correct cell type: prokaryote, eukaryote, or both.
Has a nucleoid
Has a nucleus
Has organelles
Contains ribosomes
Has a cytoplasm
Have cell membrane
Described below are groups of symptoms that can be present in honey bee colonies. Your job is to correctly identify what is happening in the colony. Remember, some of the symptoms may be caused by similar reasons, so be sure to identify the BEST answer for each symptom. 1. Few adult workers, brood pattern is spotty, drone brood or drone adults are not necessarily present 2. Few adult workers, brood few and irregular, multiple eggs in cells, lots of adult drones, brood limited to drone brood 3. Lots of adult workers, lots of capped brood, lots of young larvae, lots of eggs, no queen cells 4. Lots of adult workers, lots of capped brood, lots of young larvae, few or no eggs, queen cells present and at various stages of development 5. Moderate number of adult workers, moderate amount of capped brood, no young larvae, no eggs, ripe queen cells present, multiple queen cells present with tips opened 6.Moderate number of adult workers, moderate amount of capped brood, no young larvae, no eggs, opened queen cells present, some queen cells present opened at the sides 7. Moderate number of adult workers, moderate amount of capped brood, moderate number of eggs and young larvae, 2-3 queen cells of similar age 8. Moderate number of adult workers, lots of eggs and young larvae, no capped brood. 9. Few adult workers, brood pattern is spotty, workers with deformed wings are present These are the answer choices for each question. a) colony is superseding its queen b) colony is queenless and has laying workers c) colony is preparing to swarm
d) colony has high Varroa levels e) queen is producing inbred progeny f) colony has swarmed and will not swarm again g) colony has swarmed and may swarm again h) colony is in rapid growth but not preparing to swarm i) colony is a new swarm experiencing fast growth
Without a queen, the colony has laying females. The honey bee colonies is getting ready to swarm and/or the colony is a fresh swarm undergoing rapid growth. Fertile male honey bee is known as a drone
How can you make bees more genetically diverse?Multiple mating among colony members is a strategy used by social insect queens to increase genetic variety, which lowers intracolony relatedness and potentially reduces the fitness gains of altruistic workers. The prevalence of sickness within a nest may be decreased by increased genetic variety, which would be adaptive.
What are the three ways that genetic diversity in a population rises?Alleles can be rearranged within an organism's progeny as a result of recombination between homologous chromosomes during meiosis, random mating, random fertilization, and mutation, which can create completely new alleles in a population.
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Read the excerpt from paragraph 3.
A year later the remaining seeds were sent to the southern Forest Service station in Gulfport, Mississippi (sycamore, loblolly pine, and
sweetgum) and to the western station in Placerville, California (redwood and Douglas fir) to attempt germination. Many of the seeds, and later
cuttings, were successful and grew into viable seedlings. Some of these were planted with their Earth-bound counterparts...
What is the meaning of the word seedlings as it is used in the excerpt?
OA.
OB.
C.
D. very young trees
seeds that can sprout
very small seeds
parts of trees that hold seeds
Answer:
Very young trees
Hope this helps!
Explanation:
A seedling is a young plant, especially one raised from seed and not from a cutting.
please help mee
1. Which of the following would require the greatest number of calories?
a. heating 1 g of water from 10°C to 80°C
b. heating 10 g of water from 10°C to 40°C
c. heating 100 g of water from 10°C to 20°C
d. heating 1000 g of water from 10°C to 12°C
2. If a 10.0 g piece of metal required 100 cal to raise its temperature
by 20°C, what would you report as its specific heat?
a. 10 cal/g·°C
b. 200 cal/g·°C
c. 0.5 cal/g·°C
d. 2 cal/g·°C
3. Which of the following does not happen as the temperature of a gas
increases?
a. Molecules move faster.
b. Molecules have more collisions.
c. Kinetic energy increases.
d. Kinetic energy decreases.
4. The amount of heat in a substance depends on the _____ of the
molecules.
5. The unit for specific heat is _____.
6. A graph that shows how heat energy, temperature change, and phase
change are related is called a (an) _____.
The statement that would require the greatest number of calories is heating 1000 g of water from 10°C to 12°C. Thus, the correct option for this question is D.
What is Calorie?Calories may be defined as a type of measurement of the energy content of food. The body needs calories to perform its functions, such as breathing, circulating the blood, and physical activity.
According to the question,
m₁ = 1 g, ΔT₁ = 70.m₂ = 10 g, ΔT₂ = 30.m₃ = 100 g, ΔT₃ = 10.m₄ = 1000 g, ΔT₄ = 2.The formula of heat required is as follows:
Q = mcΔT.Since c is the same, so the product of mΔT will decide the number of calories required.
m₁ ΔT₁ = 70. m₂ ΔT₂ = 300m₃ ΔT₃ = 1000. m₄ ΔT₄ = 2000.Using the following equation:
Q = m × c × ∆T.According to the information provided in this question;
m = 10g
c = ?
∆T = 20°C
Q = 100cal
Using Q = m × c × ∆T
c = Q ÷ (m × ∆T)
c = 100 ÷ (10 × 20)
c = 100 ÷ 200
c = 0.5 cal/g°C.
Thus, the correct option for this question is C.
The action that does not happen as the temperature of a gas increases is the reduction in the kinetic energy between the molecules. Thus, the correct option for this question is D.
The amount of heat in a substance depends on the motion of the molecules. Since the temperature is defined as the measure of the average kinetic energy of molecules. The higher the temperature, the faster the motion of the molecules would be.
The unit for specific heat is calories or joules per gram per Celsius degree. A graph that shows how heat energy, temperature change, and phase change are related is called a phase change graph.
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what nucleotide sequence would be found on the partner dna strand of the strand shown?
The companion strand of the depicted DNA strand's nucleotide sequence is TGACA.
What do the numbers 5 and 3 in DNA mean?The DNA molecule's ends are numbered. The term "5'" (five prime) is used to describe one end and "3'" to describe the other. The numbers 5' and 3' indicate how many carbon atoms there are in a molecule of deoxyribose sugar that form a bond with a phosphate group.
Why does a DNA strand only extend outward in a 5 to 3 direction?Because the enzyme that adds additional bases to a growing strand needs a free 3' OH group, a new DNA strand can only grow in the 5' to 3' direction. DNA has phosphodiester as part of its sugar-phosphate backbone.
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Question:-
What nucleotide sequence would be found on the partner DNA strand of the strand shown?
A) ACTGT
B) UGAGA
C) TGACA
D) TGUGU
what role do transport epithelia play in osmoregulation of marine fish with bony skeletons?
Answer:
Transport epithelia play an important role in osmoregulation of marine fish with bony skeletons by regulating the movement of ions and water across the epithelial cells. This process helps to maintain the ionic balance between the fish's internal environment and the external environment. The transport epithelia also plays a role in regulating the osmotic pressure of the fish's body fluids, which helps to keep the fish's body fluids in balance with the surrounding environment.
Explanation:
During which phase of the crossbridge cycle is ATP split into ADP and Pi? A. Immediately preceding the detachment of the myosin head B. Immediately preceding the resetting of the myosin head C. Immediately preceding the power stroke
Immediately preceding the resetting of the myosin head of the crossbridge cycle is ATP split into ADP and Pi.
Correction option is B.
The power stroke occurs when ATP is digested into ADP and phosphate. The power stroke occurs when ADP and phosphate detach from the myosin head. A power stroke is created when ADP and phosphate dissociate from the actin active site. The power stroke happens when Ca2+ binds to the calcium head. The third step is the dissociation of myosin heads from actin. This occurs as ATP binds to the myosin crossbridge.
The following steps make up the cross bridge cycle: When ATP is hydrolyzed to ADP and Pi and the end products are still covalently linked to the protein, myosin is activated. The cross-bridge separates when myosin binds to ATP. The steps are repeated.
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in prophase, ribosomal rna synthesis stops when the chromosomes condense, and as a result:
When the chromosomes compact during prophase, ribosomal rna synthesis ends, and the nucleolus vanishes.
Ribosomal ribonucleic acid (rRNA) is a non-coding RNA that is the principal component of ribosomes, which are required by all cellsrRNA is a ribozyme that is responsible for protein synthesis in ribosomes. Ribosomal RNA is transcribed from rDNA and then bound to ribosomal proteins to produce small and large ribosomal subunits.
The ribosome's physical and mechanical element that causes transfer RNA (tRNA) and messenger RNA (mRNA) to process and translate the latter into proteins is rRNA. Ribosomal RNA is the most common kind of RNA present in most cells, accounting for over 80% of total cellular RNA despite never being translated into proteins. Ribosomes are made up of around 60% rRNA and 40% ribosomal proteins by mass.
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How does a winding steam ilistruate a characteristic of liquids
Winding steam shows a characteristic of liquids because winding steam moves like liquid and takes the container's shape.
What is meant by steam?For instance, condensation occurs when water vapor in gaseous form in the air swaps into liquid water when it comes in touch with a cool surface. Steam for Indirect Heating. Saturated Steam. soaking steam is steam that is completely dry and has the same temperature as the water from which it is created.
Steam can live in two forms: saturated or superheated. Most appealed only utilize saturated steam. Water vapor is truly a gas. Liquid water droplets that happen to be hung for some time in the air are not dissolved in the gas when the matter turns from its gas stage back into its liquid phase, the molecules take up much less space and apply far less pressure
So we can conclude that What is usually known as steam are condensed liquid water droplets
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In evolutionary terms, an organism's fitness is measured by its _____.
a) genetic variability
b) health
c) stability in the face of environmental change
d) mutation rate
e) contribution to the gene pool of the next generation
In terms of evolution, an organism's fitness is determined by the number of genes it adds to the gene pool of the next generation. Therefore, option e is correct.
Evolutionary fitness refers to reproductive success that measures how effectively a species has adapted to its surroundings. The percentage of offspring that carry an organism's genes serves as a measure of evolutionary fitness.
The whole genetic makeup of a population at any particular time is known as the gene pool. Through evolution, the gene pool of a population can evolve over time. Numerous processes, such as mutations, natural selection, and genetic drift, can cause this.
Therefore, it is believed that a population's capacity for adaptation and evolution is impacted in part by the size of its gene pool. A population's potential for future adaptation to shifting environmental conditions may be increased by having a large and diversified gene pool.
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what do your data tell about how the intensity of light affects the rate of photosynthesis performed by the plant? remember that a rate involves a change in amount over time. Does this answer make sense? Why or Why not?
The intensity of light affects the rate of photosynthesis performed as it rise from low light intensity to higher light intensity, the rate of photosynthesis will increase because there is more light available to drive the reactions of photosynthesis
What is photosynthesis?Plants and other living things use a process called photosynthesis to transform light energy into chemical energy that can later be released through cellular respiration to power the organism's activities. Light is necessary for photosynthesis, specifically for the light reactions.
The existence of the vast majority of life on Earth depends on photosynthesis. It is how almost all of the energy in the biosphere is made accessible to living things. All higher life forms on Earth consume photosynthetic organisms directly or indirectly because they are the primary producers that serve as the foundation of the planet's food webs.
The rate of photosynthesis will increase as you move from low light intensity to high light intensity because there is more light available to power the reactions of photosynthesis.
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Which of the following carry energy in the form of electrons or a terminal phosphate?
Choose one or more:
A. ATP
B. ADP
C. adenosine triphosphate
D. adenosine diphosphate
E. FADH2
F. NADH
G. NADPH
The following carry energy in the form of electrons or a terminal phosphate A. ATP E. FADH2 F. NADH G. NADPH.
The terminal phosphate refers to the phosphate group that is located at the end of a nucleic acid chain, such as a strand of DNA or RNA. The terminal phosphate group is important in the formation of the phosphodiester bond, which links adjacent nucleotides together in the chain. This bond is formed by the condensation of the 3' hydroxyl group of one nucleotide with the 5' phosphate group of the next nucleotide, forming a covalent bond between the two molecules.
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what are two reasons grouping organisms by similar structures and features can be a problem
Humans are continually attempting to meaningfully organize information about the world around them.
What are Organisms?Some of the non-living things that have been categorized in your neighborhood, at work, or at school. The classification of living things is the main objective of the biological field of taxonomy.
Taxonomy is the formal classification of organisms into groups based on those postulated relationships. It is the study of relationships between living things. According to their similarities and differences, organisms are categorized.
Biological relatives are individuals to whom you are biologically related, such as your parents, siblings, and cousins.
Therefore, Humans are continually attempting to meaningfully organize information about the world around them.
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If an organism consumes more food than it uses for energy, what happens to the extra food energy?
Answer: Energy Flow Through an Ecosystem
Secondary and tertiary consumers, omnivores and carnivores, follow in the subsequent sections of the pyramid. At each step up the food chain, only 10 percent of the energy is passed on to the next level, while approximately 90 percent of the energy is lost as heat.
What is one advantage of sexual over asexual reproduction?
A. Increased number of offspring
B. Faster reproduction
C. Large offspring
D. Increased variation of offspring
Answer: D. Increased variation of offspring
Explanation:
In sexual reproduction organisms reproduce offspring with a combination of traits from both parents, differing them from other animals of that organism. While in asexual reproduction, the parent splits their cells and created an offspring with the exact same genetic makeup of their parent.
Check THREE that apply.
Select all that apply. What are producers in a food chain?
organisms that do not rely on other organisms for food
the chain of organisms that live in the same space
organisms that rely on plants or other consumers for food and energy
organisms that are able to make food by means of photosynthesis
the first organisms in a food chain
The producers in a food chain that apply is organisms that are able to make food by means of photosynthesis organisms that rely on plants or other consumers for food and energy the first organisms in a food chain.
What is photosynthesis ?The process of photosynthesis is used by plants, algae, and some microorganisms to transform solar energy into chemical energy in the form of glucose (sugar) and other organic compounds.This process occurs in the chloroplasts of the cell, specifically in the chlorophyll pigments. During photosynthesis, carbon dioxide (CO2) and water (H2O) are taken in and through a series of chemical reactions, are converted into glucose and oxygen (O2). The glucose is used as an energy source for the plant, while the oxygen is released into the atmosphere as a byproduct. Photosynthesis is crucial for the survival of plants and also plays a vital role in the global carbon cycle, helping to regulate the Earth's climate.To learn more about photosynthesis refer:
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Which is the least likely reason that pigs have been chosen as donors for humans in the process of
xenotransplantation?
O Pigs are free of known diseases.
O Pigs are cost-effective to raise.
O Pigs have the same DNA as humans.
O Pigs are quick breeding.
Pigs are free of known diseases s donors for humans in the process of
xenotransplantation.
What animals can be used for xenotransplantation?For a variety of logistical, health, and safety reasons, doctors and the U.S. Health Department urge that animals including pigs and cows be prioritized above nonhuman primates such as monkeys when considering prospective tissue and organ supplies.
Are animals killed for xenotransplantation?Without their consent, pigs and other mammals used for xenotransplantation undergo genetic engineering, a lifetime of captivity, and nearly unbearably painful treatments before being put to death. The FDA has not yet authorized any human solid organ allograft projects, despite the fact that there only been a few efforts at human xenografting throughout the years.
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