The overall end products of photosynthesis in plants are O₂ (oxygen) and glucose (C₆H₁₂O₆). The fate of CO₂ in plants is that it is used as a reactant in the process of photosynthesis to produce glucose.
Photosynthesis:During photosynthesis, plants use carbon dioxide (CO₂) and water (H₂O) to produce glucose (C₆H₁₂O₆), which is the primary source of energy for the plant. O₂ is released into the atmosphere as a byproduct of photosynthesis.
The fate of CO₂ in plants is that it is used as a reactant in the process of photosynthesis to produce glucose. The CO₂ is absorbed from the atmosphere through small openings in the leaves called stomata, and then it undergoes a series of chemical reactions in the chloroplasts of the plant cells to produce glucose. This glucose is then used by the plant as an energy source for its growth, maintenance, and reproduction. Moreover, glucose can be converted into other molecules such as starch and cellulose, which are essential components of the plant's structure.
In summary, photosynthesis plays a vital role in converting CO₂ into glucose and oxygen. This process enables plants to generate the energy they require while simultaneously reducing the levels of CO₂ in the atmosphere. Ultimately, the CO₂ absorbed by plants during photosynthesis is used to create essential energy-rich molecules that support plant growth and development.
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In the heart the mixing of oxygen-rich and oxygen-poor blood is prevented by the.
Answer:
By a muscular wall that prevents blood without oxygen from mixing with the blood that has oxygen.
Explanation:
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The epicenter of an earthquake is 250 km away. You feel the thud of its p-
wave with the velocity of 6.3 km/s. How many seconds later would you
expect to feel the s-wave with the velocity of 4.8 km/s?
You will feel the s-wave 12.4 seconds after you felt the p-wave.
How to find the difference in time?
The waves must travel 250 km, we know that the p-wave travels with a velocity of 6.3km/s. The time it takes to travel that distance is given by:
250km/( 6.3km/s) = 39.68s
At this point is when you feel the p-wave.
The s-wave travels at 4.8 km/s, than it will take:
250km/(4.8km/s) = 52.08 s
The difference in time is:
d = 52.08s - 39.68s = 12.4 s
This means that you will feel the s-wave 12.4 seconds after you felt the p-wave.
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Choose one sort of diversity (for example, age, gender, etc.)
and explain why it is essential as a factor in your opinion.
The type of diversity that I have chosen is ‘Gender Diversity’ and below are the reasons why it is essential as a factor in my opinion.
Gender diversity refers to the representation of both men and women in the workplace and society as a whole. It includes people of all genders, including non-binary individuals. Gender diversity has a significant impact on the workplace and society in general. As women are still underrepresented in many industries and roles, increasing gender diversity can lead to more opportunities for women and help break down gender stereotypes.
By having a gender-diverse workplace, companies can ensure compliance with these laws and avoid penalties or legal issues in the future.In conclusion, gender diversity is essential because it promotes a more inclusive environment, encourages innovation and creativity, and leads to better decision-making. By having a gender-diverse workplace, companies can improve employee satisfaction, increase profitability, reduce discrimination and biases, and ensure compliance with laws related to gender diversity.
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what are the main metabolites that feed into gluconeogenesis
The main metabolites that feed into gluconeogenesis are lactate, pyruvate, glycerol, and certain amino acids.
Gluconeogenesis is the process by which the liver and kidneys synthesize glucose from non-carbohydrate sources, such as lactate, pyruvate, glycerol, and amino acids. These metabolites are converted into glucose through a series of enzymatic reactions that bypass the irreversible steps of glycolysis.
Lactate is produced by anaerobic glycolysis in tissues such as muscle, and can be transported to the liver for conversion to glucose. Pyruvate, the end product of glycolysis, can also be converted to glucose through gluconeogenesis. Glycerol, which is released from adipose tissue during lipolysis, can be converted to dihydroxyacetone phosphate (DHAP) and enter the gluconeogenic pathway.
Certain amino acids, such as alanine, can also be converted to glucose through gluconeogenesis. The carbon skeletons of these amino acids are converted into pyruvate, oxaloacetate, or other intermediates that enter the gluconeogenic pathway.
The regulation of gluconeogenesis is complex, and is influenced by hormonal signals such as glucagon and insulin, as well as by the availability of substrates and cofactors. The process is crucial for maintaining blood glucose levels during periods of fasting or carbohydrate restriction, and for providing glucose to the brain and other tissues that require a constant supply of glucose for energy.
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Which of the following will cause the phase sequence of a synchronous generator to reverse from abc to acb? a. Increasing the number of poles. b. Reversing the direction of the rotation. c. Reversing
Reversing the direction of rotation will cause the phase sequence of a synchronous generator to reverse from abc to acb. Therefore, the correct option is (b) Reversing the direction of rotation.
A synchronous generator, also known as an alternator, is a device that converts mechanical energy into electrical energy. It works on the principle of Faraday's law of electromagnetic induction to generate electricity. When the rotor of a synchronous generator rotates, it induces a voltage in the stator winding, which is the electrical output of the generator. Phase sequence of a synchronous generator The phase sequence of a synchronous generator refers to the order in which the voltage phases are arranged in the stator winding.
It is commonly denoted as abc, where a, b, and c are the three-phase windings of the stator that are 120 degrees apart from each other. Reversing the direction of rotation Reversing the direction of rotation of a synchronous generator changes the order of the voltage phases in the stator winding from abc to acb. This happens because the voltage induced in the stator winding depends on the direction of rotation of the rotor. When the direction of rotation is reversed, the phase sequence of the voltage is also reversed.
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any language
PLZ I will mark you brainlist
Answer:
Symbol
Explanation:
Explain what happens to an animal cell when it removed from an organism and placed into distilled water
Answer:
I think it has to do with osmosis
Explanation:
Osmosis is the process of having water pass from a low concentration medium to a high concentration one, given that the barrier (membrane) is semi-permeable.
When a cell is placed into distilled water, hypertonic solution takes place.
A cell may contain many solutes so it is considered hypertonic when compared to distilled water which is hypotonic So in this case, when a cell is placed in distilled water, water moves from outside of the cell to the inside leading to swelling of the cell.
What is the independent variable
Will practicing basketball more often improve my ability to score more free throws
1. Time practicing
2. Type of basketball used
3.free throw score
Answer:
1. Time practicing
Explanation:
Independent variable is the variable with only 1 change. You are only changing the time for practice.
The development of a new community in a previously uninhabited area occurs via which of the following processes?
a.secondary succession
b.primary succession
c.adaptive radiation
d.geographic isolation
Answer: B. Primary Succession
Transcription of the trp operon is decreased when tryptophan interacts with the.
Answer:
Transcription of the trp operon is decreased when tryptophan interacts with the trp repressor. The trp repressor is a protein that binds to the operator sequence of the trp operon and blocks RNA polymerase from transcribing the genes for tryptophan synthesis. When tryptophan levels are high, tryptophan binds to the trp repressor and activates it, causing it to attach to the operator and repress transcription. When tryptophan levels are low, tryptophan dissociates from the trp repressor and inactivates it, allowing transcription to proceed
Explanation:
Does spongy bone have a Haversian canal?
How does negative feedback mechanism work in osmoregulation
Answer:
Osmoregulation is an example of a negative feedback, homeostatic control system. This system detects changes in the salinity of the water Chinook salmon live in, working to keep the body water concentration constant.
Explanation:
Red giant stars have cool temperatures. They are very bright due to their large size. Which letter on the HR diagram corresponds to the Red giants?
Question 5 options:
A
B
C
D
Letter C on the HR diagram corresponds to the Red giants.
What are Red giant stars?These are luminous giant star of low or intermediate mass in a late phase of stellar evolution.
In the diagram the letter C had the lowest temperature and highest luminosity which was why it was chosen as the most appropriate choice.
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Answer:
Letter C would be the correct answer.
Explanation:
This would be due to the fact that Red is the coolest. On the HR Diagram, the letter C is closest to the coolest temperature.
pls answer fast i’m taking the test. i couldn’t find the answer anywhere.
Answer:
The answer is A: Outer core.
Explanation:
The inner core is solid, the outer core is liquid, and the mantle is solid/plastic.
I hope this helped and if it did I would appreciate it if you marked me Brainliest. Thank you and have a nice day!
Which of the following best describes continental drift?
A. There is no evidence that the plates move
B. The plates move about 1 inch per year.
C. The plates move about 30 kilometers per year.
D. It has never happened.
: Level I: Reviewing Facts and Terms (Bloom's Taxonomy: Comprehension)
49) The enzyme that catalyzes the conversion of H2O and CO2 to H2CO3 is called ________.
The enzyme that catalyzes the conversion of H₂O and CO₂ to H₂CO₃ is called carbonic anhydrase.
Carbonic anhydrase is a zinc-containing enzyme that plays a key role in the regulation of acid-base balance in the body. It catalyzes the reversible conversion of carbon dioxide and water to carbonic acid, which then dissociates to form bicarbonate and hydrogen ions.
This reaction is essential for the transport of CO₂ from tissues to the lungs for elimination and for the regulation of bicarbonate concentrations in the blood.
Carbonic anhydrase is found in many tissues in the body, including red blood cells, the kidney, and the eye, and is also used as a target for certain medications. Mutations in the gene encoding carbonic anhydrase can lead to a variety of disorders, including osteopetrosis, renal tubular acidosis, and glaucoma.
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Explain how the products of anaerobic respiration cause your cells to be less efficient
Products of anaerobic respiration, does not require oxygen, as a result lactic acid is produced, which lowers the pH of the cells and cause our cells to be less efficient.
ATP is vital because your muscles use the ATP to contract. During aerobic respiration, your body typically performs this function. Your cells can make a lot of ATP with oxygen and glucose, up to 38 ATP molecules per glucose molecule.
However, when you exercise vigorously, your lungs are unable to keep up, and there is insufficient oxygen to supply your muscles with the ATP they require. Your muscle cells decide to switch to anaerobic respiration on their own.
Your muscle cells use sugar to make ATP during anaerobic respiration, but they don't use oxygen. Your muscles will begin to burn as a result of the rapid conversion of lactate into lactic acid during this process. As you may have noticed, lactic acid makes it harder to exercise.
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Specify the coordinate system (Cartesian, cylindrical, spherical) you would use, along with any relevant assumptions, when modeling transport processes in each of the following scenarios: loss of energy through a flat double-pane window C. transfer of dissolved oxygen from a culture medium into sphere-shaped cells the fluid motion produced when stirring coffee in a typical mug d. dissipation of energy from the skin of a tall and skinny person the velocity profile in waves about to crash on a flat shore f. heating of a cold bottle of alcoholic cider by a warm hand e
The rectangular coordinate system is another name for the Cartesian coordinate system. It is a system used in geometry that employs coordinates to establish the location of a geometric component (such a point, for instance). Each location in this system is described by two numerical coordinates.
The following coordinate systems are used in each of the given scenarios:
A. Loss of energy through a flat double-pane window Cartesian coordinate system is used to model transport processes in the scenario of energy loss through a flat double-pane window. The major assumptions include that the process is symmetrical, the heat transfer coefficient is uniform, and the heat transfer is two-dimensional.
B. Transfer of dissolved oxygen from a culture medium into sphere-shaped cells Spherical coordinate system is used to model the transport processes in the transfer of dissolved oxygen from a culture medium into sphere-shaped cells. The assumptions include that the rate of oxygen transfer is uniform, the cells are symmetrical, and the diffusivity of oxygen is constant.
C. Fluid motion produced when stirring coffee in a typical mug cylindrical coordinate system is used to model the transport processes of fluid motion produced when stirring coffee in a typical mug. The assumptions include that the flow is two-dimensional, the flow is symmetrical, and the viscosity of the fluid is constant.
D. Dissipation of energy from the skin of a tall and skinny person Cartesian coordinate system is used to model the transport processes in the dissipation of energy from the skin of a tall and skinny person. The assumptions include that the surface temperature is uniform, the surface is symmetrical, and the heat transfer coefficient is uniform.
E. Heating of a cold bottle of alcoholic cider by a warm hand cylindrical coordinate system is used to model the transport processes of heating of a cold bottle of alcoholic cider by a warm hand. The assumptions include that the flow is two-dimensional, the flow is symmetrical, and the viscosity of the fluid is constant.
F. Velocity profile in waves about to crash on a flat shore Spherical coordinate system is used to model the transport processes in the velocity profile in waves about to crash on a flat shore. The assumptions include that the waves are symmetrical, and the diffusivity is constant.
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Lập bảng so sánh adn và arn
Answer:
like DNA, RNA is made up of nucleotides.There are two differences that distinguish DNA from RNA: (a) RNA contains the sugar ribose, while DNA contains the slightly different sugar deoxyribose (a type of ribose that lacks one oxygen atom), and (b) RNA has the nucleobase uracil while DNA contains thymine.
Explanation:
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Which of the following statement best describe insulin? a. It is administered by the subcutaneous route.
b. It is contraindicated in type II diabetes mellitus.
c. It acts on intracellular receptors.
d. It causes Vitamin B12 deficiency
The statement that best describes insulin is option A: It is administered by the subcutaneous route.
Insulin is a hormone that is typically administered via subcutaneous injection. This route allows for effective absorption and distribution of insulin throughout the body. However, there are also other methods of administering insulin, such as through insulin pumps or inhalation devices.
Insulin is not contraindicated in type II diabetes mellitus. In fact, insulin therapy is commonly used in the treatment of type II diabetes when other methods, such as oral medications, diet, and exercise, are not sufficient to control blood sugar levels.
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An apple, potato, and ______ all taste the same with your nose plugged.
Answer:
An apple, potato, and carrot all taste the same with your nose plugged.
Explanation:
An apple, potato, and carrot all taste the same with your nose plugged.
Which of the following is an accurate statement, regarding sex-differences in sexual arousal?
a)The septal area regulates sexual arousal in males but not in females.
b) The preoptic area regulates sexual arousal in men, while the ventromedial hypothalamus (VMH) regulates sexual arousal in women.
c) The ventromedial hypothalamus (VMH) regulates sexual arousal in men, while the preoptic area regulates sexual arousal in females.
d)The septal area regulates sexual arousal in females but not in males.
The accurate statement regarding sex-differences in sexual arousal is b) The preoptic area regulates sexual arousal in men, while the ventromedial hypothalamus (VMH) regulates sexual arousal in women.
The statement that the septal area regulates sexual arousal in females but not in males is not an accurate statement. The septal area is a part of the brain that is involved in sexual behavior and arousal in both males and females. It has been found to play a role in sexual motivation and pleasure in both sexes.
Research has shown that there are some sex differences in the brain areas involved in sexual arousal. For example, women have been found to have greater activation in the amygdala, hypothalamus, and anterior cingulate cortex during sexual arousal, while men have greater activation in the insula and orbitofrontal cortex. However, this does not mean that the septal area is not involved in sexual arousal in males.
Overall, it is important to recognize that there are some differences in the brain areas involved in sexual arousal between males and females, but these differences do not mean that certain areas are exclusive to one sex or the other. Both sexes rely on a complex network of brain regions to experience sexual arousal and behavior.
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Ice is created when
a
water's temperature remains constant.
b
water's temperature increases.
c
water's temperature decreases.
d
water's temperature does not influence the creation of ice.
Answer: I think the answer is b
Explanation:
How far each of the following statements is correct with explanation: Spores of fern plant are produced due to mitosis
Answer:
did u know the answer
Explanation:
For every pound of shrimp caught, up to _____ pounds of other species are discarded.
For every pound of shrimp caught, up to pounds of other species are discarded anxiety (low vs. high) and stress (low vs. moderate vs. high) on test.
Everyone experiences anxiety occasionally, but persistent anxiety can reduce your quality of life. Though shrimp best known for altering shrimp, worry can have negative effects on our physical health. anxiety speeds up our heartbeat and breathing, concentrating blood flow to the parts of our brains that need it. You are getting ready for a challenging situation by having this extremely bodily shrimp. Test performance may be impacted by anxiety. According to studies, pupils with low levels of test anxiety perform better on multiple-choice question (MCQ) exams than pupils with high levels of anxiety. Studies have indicated that female students have greater levels of test anxiety than male students.
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What is the base pairing rule state
HELP!!! The plants are taking
over!
Photosynthesis starts with two
reactants and changes into two
products. This growth doesn't
ADD up.
61
glucose
15
phloem
>
Photosynthesis Puzzle #1
Photosynthesis Puzzle #1
33
carbon
dioxide
42
xylem
Photosynthesis Puzzle #1
Photosynthesis Puzzle #1
17
52
water
oxygen
The reaction of the puzzle of photosynthesis will be:
33+52→61+17
i.e. carbon dioxide + water→ glucose+ oxygen.
Carbon dioxide and water from air is converted into glucose and oxygen by using sun energy. Glucose is used by plants and oxygen is released which is used by animalsWhat is photosynthesis?It is the process in green plants by which they use sunlight to synthesize nutrients from carbon dioxide and water
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help plz
Explore: Use the Gizmo to create three more carbon paths, each starting and ending in the atmosphere. Label each location with A for atmosphere, B for biosphere, G for geosphere, or H for hydrosphere. (You can also use P for anthroposphere if you like, or just include it in the biosphere.)
path 1
path 2
path 3
Answer:
The answer is below
Explanation:
1. Path A (Atmosphere) :
Carbon Path: Atmospheric CO2: this arises from geological sources such as volcanoes, burning fossil fuels, etc. This gets carbon dioxide back into the atmosphere during these processes.
2. Path G (Geosphere)
Carbon Path: Lithosphere: Earth’s carbon has been researched to have large limestone deposits. This limestone can be found in the Earth's lithosphere. Through the heating of limestone, carbon dioxide gets back to the atmosphere.
3. Path H (Hydrosphere)
Carbon Path: Oceania CO2: there is a large deposit of dissolved CO2 underneath the ocean. As the ocean gets colder, it dissolves more. The plants absorbed carbon dioxide through photosynthesis and get back to the atmosphere
The earth's atmosphere has layers: the exosphere, thermosphere, mesosphere, stratosphere, and troposphere from highest to lowest levels.
These layers are composed of Nitrogen, oxygen, other gases and are defined by unique characteristics of temperature and pressure.
1. Path A (Atmosphere)
The carbon path in this layer involves atmospheric carbon dioxide. The burning of fossil fuels like petrol, coal, diesel, volcanic explosions and wildfires brings back the carbon dioxide in the atmosphere during these processes.
2. Path G (Geosphere)
The carbon path involves the lithosphere. Expiration by plant and animal, burning of carbonate rocks like limestone, shale gas and coal release carbon which get backs in the atmosphere.
3. Path H (Hydrosphere)
The carbon path involves oceanic carbon dioxide. Ocean and water bodies have enormous amounts of dissolved carbon in them. Aquatic plants use this diffused carbon dioxide and free it back into the atmosphere.
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How Are We Able to See the Moon?
Answer:
We can see the Moon as the sunlight reflects to us on the Earth from its surface.
Explanation:
We can see the Moon as the sunlight reflects to us on the Earth from its surface. The surface of the moon is very rocky and fairly dark. However, it provides enough light at night as it is so close to the earth. Everyone see the Moon at different positions at the same time.
The Moon also circles once around the Earth during a month.
Mammals produce heat by using the endogenous uncoupling agent:A) the protein cytochrome c.B) the protein thermogenin.C) a modified form of the F0F1 ATPase.D) the small molecule 2,4-nitrophenol synthesized by the cell.E) the protein thioredoxin.
Mammals produce heat by using the endogenous uncoupling agent of the protein thermogenin. The correct answer is B.
Thermogenin, also known as uncoupling protein 1 (UCP1), is a unique protein found in brown adipose tissue (BAT) of mammals. Its primary function is to facilitate heat production, or thermogenesis, by uncoupling the oxidative phosphorylation process within the mitochondria.Here's a step-by-step explanation of how thermogenin works to produce heat:Thermogenin is activated by cold temperatures or other stimuli, such as norepinephrine released in response to cold exposure.Upon activation, thermogenin is inserted into the inner mitochondrial membrane, where it forms a channel for protons (H+).The flow of protons through this channel allows them to bypass the ATP synthase complex (F0F1 ATPase), which is responsible for generating ATP during oxidative phosphorylation.By bypassing the ATP synthase complex, the energy derived from the electron transport chain is released as heat instead of being used to synthesize ATP.This increase in heat production helps to maintain body temperature and protect against hypothermia.In conclusion, the endogenous uncoupling agent responsible for heat production in mammals is the protein thermogenin, which works by disrupting the normal process of oxidative phosphorylation and releasing energy as heat instead of ATP. This mechanism is essential for maintaining body temperature and adapting to cold environments.For more such question on thermogenin
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