What determines a cat's fur pattern?

Answers

Answer 1

A cat's color pattern is partly determined by a gene called DKK4.

Domestic Cats All cats have some sort of tabby in their genetics. The A gene is involved in cat patterns. A, or agouti, dominant, produces ticks or bands of color in the hair.

There are 6 types of cat hair patterns. These are tabby, solid, bicolor, tricolor, tortoiseshell and colorpoint. These different markings are attributed to cat genetics, and the results can be surprising.All domestic cats, even plain ones, have an underlying genetic pattern of tabby. Spots, Stripes, Spots:

A cat's fur color pattern resulting from an important gene.

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Related Questions

Blocks of genetic material that do not recombine and are passed on for generations are called
a) phenotypes b) genotypes c) karyotypes d) haplotypes

Answers

Blocks of genetic material that do not recombine and are passed on for generations are called haplotypes.

A haplotype is a set of DNA variants along a single chromosome that tend to be inherited together. Because they are close together on the chromosome and recombination between these variants is rare, they are usually inherited together.

The haplotypes represent sequences along the chromosome that are either conserved intact or separated over time by recombination. This basic concept has led to the development of methods to extract information about recombination to help researchers identify disease-causing genes and loci.

In the genome, alleles of closely spaced variants on the same chromosome tend to occur together more frequently than would be expected at random. These allelic blocks are called haplotypes.

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Energy from the cell is needed to move substances against a concentration difference.
Compare and Contrast What are the similarities and differences between facilitated
diffusion and active transport by a protein pump?

Answers

Facilitated diffusion and active transport are two processes by which cells can move substances across their membranes. Both processes involve the use of proteins to transport substances, and both require energy from the cell to function. However, there are also some key differences between the two processes:

Similarities:

Both facilitated diffusion and active transport involve the use of proteins to transport substances across a cell membrane.
Both processes require energy from the cell to function.
Differences:

Facilitated diffusion is a passive process, which means that it does not require the cell to use energy to actively pump substances across the membrane. Instead, substances are transported down their concentration gradient, from an area of high concentration to an area of low concentration.
Active transport, on the other hand, is an active process that requires the cell to use energy to pump substances against their concentration gradient, from an area of low concentration to an area of high concentration.
Facilitated diffusion can transport substances in either direction, while active transport can only transport substances in one direction (from low concentration to high concentration).
Facilitated diffusion is limited by the concentration gradient of the substance being transported, while active transport is not. This means that active transport can continue to transport substances even when their concentrations are equal on either side of the membrane.
Active transport is an active process

When you took the salad out of the refrigerator for dinner, the lettuce looks wilted and some water was in the bottom of the bowl. Use the principles of osmosis to explain what happened. why

Answers

Water molecules must have moved out of the lettuce by osmosis. The addition of salt and other seasonings must have created a hypertonic ambiance for the cells of the lettuce.

Osmosis refers to the movement of solvent (mostly water) molecules through a selectively (semi) permeable membrane from a region of lower solute concentration to a region of higher solute concentration, in such a way as to equate the solute concentrations on both sides. Water usually moves osmotically from regions of lower solute concentration (high water potential) to regions of high solute concentration (low water potential).

Thus, water will move out of the cells of the lettuce to the surrounding (bottom of the bowl) due to the lower water potential of the surrounding.

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A kidney demonstrating coarse asymmetric renal corticomedullary scarring, deformity of the renal pelvis and calyces, interstitial fibrosis, and atrophic tubules containing eosinophilic proteinaceous casts is most suggestive of:

Answers

The findings described are most suggestive of chronic kidney disease (CKD). This is a condition where the kidneys become unable to filter blood as efficiently as they normally would, leading to a buildup of waste products in the body.

CKD can be caused by a variety of different factors, including long-term exposure to toxins, certain medications, and certain medical conditions such as diabetes and hypertension. Chronic kidney illness can cause atrophic tubules filled with eosinophilic proteinaceous casts, asymmetric corticomedullary scarring, distortion of the renal pelvis and calyces, and interstitial fibrosis in the kidney.

These findings suggest that the kidney is not functioning properly, and that there has been long-term damage to the organ. The specific cause of the CKD can only be determined after further testing. Treatment options vary depending on the cause and the severity, but may include medications, lifestyle changes, and dialysis.

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The lac Operon is considered an inducible operon. Explain what this means making reference to and comparing the trip operon

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The lac operon is an inducible operon, meaning that it is expressed only when needed. This is in contrast to a repressible operon, such as the trp operon, which is turned off in response to a stimulus.

The lac operon is activated when lactose, its inducer, is present in the environment. This activates the lac repressor, which in turn binds to the DNA, blocking the transcription of the genes. When the inducer is absent, the repressor is not activated, so the genes are expressed. In contrast, the trp operon is activated when the repressor is absent.

When the repressor is present, the trp operon is not expressed, and when the repressor is absent, the trp operon is expressed. Therefore, the lac operon is activated when its inducer is present, while the trp operon is activated when its repressor is absent.

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Categorize all the components involved in photosynthesis as either matter or energy!

Answers

In photosynthesis, matter components are chlorophyll, water, carbon dioxide and glucose. Energy components are light energy, chemical energy, thermal energy.

Matter:

Chlorophyll: a pigment found in the chloroplasts that absorbs light energy

Water: a molecule that is oxidized during the light-dependent reactions

Carbon dioxide: a molecule that is used as a source of carbon for the synthesis of organic compounds

Glucose: a simple sugar produced as a result of the light-independent reactions.

Energy:

Light energy: energy from the sun that is absorbed by the chlorophyll to drive the reactions of photosynthesis

Chemical energy: energy stored in the bonds of glucose and other organic compounds produced during photosynthesis

Thermal energy: energy in the form of heat that is released as a byproduct of the reactions of photosynthesis.

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Why can animals with a lot of fat in their bodies live in places that are cold and don’t have a lot of food

Answers

Answer:

Explanation:

the fat insulated the body keeping it warm and the fat stores nutrients to keep the animal sustained

what part of a comet points most directly away from the sun?

Answers

The tail of the comet always points away from the sun no matter what direction the comet travels. Because the solar wind always blows out from the sun!

Tail

The tail actually has two parts – the dust tail and the ion tail. These can extend for millions of miles. The tail of the comet always points away from the sun no matter what direction the comet travels because the solar wind always blows out from the sun.


Which of the following explanations best describes how mass is
conserved in the process above?
A.Matter is consumed and used by individual cells to grow
following mitosis
B.Matter is consumed and used by individual cells to grow
following meiosis
C.Matter is created by individual cells to grow following mitosis
D.Matter is created by individual cells to grow following meiosis

Answers

Following mitosis, each individual cell uses matter to grow. Individual cells produce matter to expand after mitosis.

How does photosynthesis maintain mass?

Six carbon atoms, twelve hydrogen atoms, and eighteen oxygen atoms are reorganized in this process from one configuration in the reactants to another configuration in the products using the energy of the sun. Because the same atoms are present on both sides of the reaction, mass is conserved.

What does photosynthesis's mass mean?

A tree's main component by weight is carbon. Carbon is derived from carbon dioxide, which is used in photosynthesis. Plants use photosynthesis to transform solar energy into chemical energy, which is stored in the bonds of carbon molecules made of water and carbon dioxide from the atmosphere.

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The pancreatic fluid accumulates in sac like pouches called pancreatic acini and eventually flow out the ___________________ duct which carries these secretions to the ___________________

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The pancreatic fluid is stored in small, sac-like structures known as pancreatic acini. These secretions then travel along the duodenum duct to the pancreatic duct, where they are released.

The pancreatic duct and duodenum are two essential components of the digestive system. The pancreatic duct carries secretions from the pancreas to the duodenum, which is the first part of the small intestine. The secretions of the pancreas, including digestive enzymes and bicarbonate, are produced in the pancreatic acini and then travel through the ducts to the duodenum.

The duodenum acts as a buffer, allowing the secretions to mix and interact with the other digestive enzymes and bile from the liver, before entering the small intestine. The pancreatic duct and duodenum work together to ensure that the body can properly process and absorb nutrients from the foods we consume.

The pancreatic fluid is essential for proper digestion and absorption of nutrients, as it helps to break down complex molecules in the food we eat. Without the pancreatic duct and duodenum, the body would not be able to process and absorb the necessary nutrients.

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3.3.2 Test (CST): Planet Earth
Question 3 of 10
Which two terms apply to continental crust rather than oceanic crust?
A. Darker in color
B. Less dense
C. Older in age
D. Thinner

Answers

Less dense and Darker in color are  two terms apply to continental crust rather than oceanic crust.

The both option are correct A and B.

What is a characteristic of oceanic crust?

When compared towards the continental crust, the oceanic lithosphere is thin, relatively young, simpler, and chemically richer in magnesium. The oceanic lithosphere is the chilled and crystallised melt fraction that results from the magmatism of the mantle there at semi ridges.

How does the oceanic crust function?

At subduction zones, the oceanic crust is forced back into the mantle, causing this process to happen. At mid-ocean divides and volcanic hotspots, new crust in the form of volcanic rock is created when old oceanic plate is submerged and melts into magma.

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When a whale migrates from one pod to another pod, alleles in each gene pool become more similar to each other. This is an example of which mechanism of evolution. Mutation Natural Selection Genetic Drift Gene Flow ​

Answers

This is an example of genetic drift mechanism of evolution.

When whales migrate from one pod to another pod, unique alleles found in each gene pool become more similar over time. This phenomenon is known as genetic drift, which is a mechanism of evolution.

Genetic drift is the result of random fluctuations in the frequency of alleles, which can be caused by a variety of factors, including migration, natural disasters, and population size.

As whales migrate and the gene pools of different pods become more similar, the genetic diversity of the overall population decreases. This process can have a lasting impact on the survival of a species.

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Explain how the activity simulates each of the following concepts as a process of natural selection (Variation, competition, struggle for survival, adaptation, environment, and selecting agent). Describe a specific example from this activity for each concept.

Answers

Examples of various concepts of the natural section are

Variation: Eye colour, body form, and disease resistance,

competition: Plants compete with each other for light exposure, temperature, humidity, pollinators, soil nutrients and growing space

struggle for survival: migration, hibernation, food collecting and storage, defensive actions, and child-rearing.

The term "natural selection" refers to the process through which populations of living organisms adapt and change. Because population members are naturally different, each member of a population is unique in some aspects. This variation demonstrates how some people are more likely than others to have characteristics that fit in with their environment.

More environment-adapted species typically survive and reproduce more frequently than less environment-adapted ones through a process called natural selection. For instance, tree frogs are occasionally eaten by birds and snakes.

Natural selection is the term for Charles Darwin's theory of evolution. Due to the scarcity of resources in nature, animals with heritable features that help in survival and reproduction frequently produce more offspring than their contemporaries, increasing the prevalence of such traits through successive generations.

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a ddntp, used often in dna sequencing, lacks a(n) ________ at the ________ and ________ carbons.

Answers

In DNA sequencing, a ddNTP is frequently used. It lacks a hydroxyl (OH) group at the 2' and 3' carbons.

Dideoxynucleotides triphosphates are referred to as ddNTP. Four kinds of nucleotides are included in it: ddATP, ddTTP, ddCTP, and ddGTP. Sanger sequencing, also known as chain-termination sequencing, employs ddNTP.

This ddNTP lacks a free hydroxyl (OH) group necessary for DNA replication, it is employed to prevent DNA synthesis. They are also known as 2' 3' because they lack hydroxyl groups on the ribose at either the 2' or 3' locations. As a result, they stop the chain from elongating because no phosphodiester bond is formed with the subsequent carbon.

Therefore, the blanks can be filled with hydroxyl (OH) group, 2' and 3'.

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Full explanation Please

Answers

The relationship between the III-1 and III-2 is husband and wife as it is consanguineous marriage.

What is pedigree analysis?

Pedigree analysis was created to comprehend how genes are passed from parents to their offspring.

It was created as a diagram that can illustrate a family tree, the family members, and their individual genetic characteristics.

Getting married to someone you are closely related to is known as consanguine marriage. Despite the possibility of incest, it indicates more than just incest's intimate component.

Marriage between two relatives who are second cousins or closer is considered a consanguineous union in a clinical sense.

Thus, due to consanguine marriage, they are husband and wife.

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What is lever rule used for?

Answers

A binary equilibrium phase diagram's mole fraction (xi) or mass fraction (wi) for each phase may be calculated using the lever rule in chemistry.

Who developed the lever theory?

The lever principle, proven in Book I of EP, is applied when two figures are each suspended from the lever at a single point. Archimedes discusses configurations in which two figures are suspended from a straight horizontal lever hanging below it in various ways.

What is another name for the lever rule?

This illustration also explains why these equations are known as the "lever rule." Because you use the "arm" in the (yA-xA) segment closest to the vapor for the calculation of L (liquid) and the "arm" closest to the for the calculation of G (vapor), it is also often referred to as the "reverse arm rule."

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It began much more simply, with the synchronization of bodies: running when others run, laughing when others laugh, crying when others cry, or yawning when others yawn.

Answers

This section discusses a phenomenon called social synchronization, which is the propensity for people to mimic the actions and bodily reactions of those in their social group.

Running, laughing, sobbing, and yawning is only a few of the activities stated in the chapter that displays social synchrony.

According to research, social synchronization may take place in a wide range of contexts, such as sports teams, schools, and even online communities. It can also have a number of advantages, including enhancing group cohesion, lowering stress levels, and fostering happy feelings.

Social synchronization can be explained by the concept of social contagion, which is the spread of emotions and behaviors through a group, and the idea of mirror neurons, which are brain cells that respond to observed actions as if they were performed by the observer.

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A blood vessel adapted to withstand a high pulse pressure would be expected to have which of the following

Answers

An expected characteristic of a blood vessel designed to withstand a high pulse pressure is elastic tunica media. Histamine is most likely to result in a sharp drop in blood pressure.

Which of the following categories of blood vessels has a high blood pressure that pulses?

Due to their direct connection to the heart's ventricle, the blood pressure is highest in the large arteries (like the aorta). There is a decrease in blood pressure as the blood vessel splits from the small arteries and into the arterioles.

Blood pressure can rise even more as a result of stress-related behaviours like eating more, smoking, or drinking. certain long-term conditions. High blood pressure can result from a number of illnesses, including kidney disease, diabetes, and sleep apnea.

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This is all the information it gives

Answers

Food coloring molecules in both the hue yellow and the color blue are tiny.

What does the word "membrane" mean?

The small piece that defines the external perimeter of a live colony or a interior cell compartment is known in biology as a membrane. The organelles are the spaces surrounded by internal membranes and have the plasma membrane as their external border.

What purposes do membranes serve?

Therefore, the cell membrane serves two purposes: first, as a barrier preserving the components in and undesired things out, and second, as a gate permitting the passage of vital nutrients into the cell and the movement of waste products out of the cell.

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This is due today, I’ll give brainliest to whoever answers with the best answer.
This is for 30 POINTS!!!!!!
DUE TODAY

Answers

Gravity holds the sun, earth, and moon together, and these three bodies engage in a variety of interactions. Due to the earth's gravitational attraction, the moon revolves the planet. And because of the sun's gravitational attraction, the earth orbits the star.

What angle is the Moon at with respect to the Sun and Earth?

The Moon travels in tandem with Earth's orbit around the Sun. Despite the Earth's continued motion, the Moon must travel two additional days during its orbit, which lasts 27 1/2 days.

How near to one another are the Earth, Moon, and Sun?

The Moon is 384,403 kilometres away from Earth on average. Additionally, there are 149,597,887 kilometres between the Earth and the Sun on average.

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How do snails protect themselves from predators?

Answers

Their are various adaptation that helps snail to defend from predators that include cryptic coloration , thickened outer shell . They also produces mucous and irritating smells . They have quick hiding and withdrawal behaviors.

In general ,snails have a hard exoskeleton usually formed from crystalline calcium carbonate. these shells helps to protect snails from predators and some time extreme temperature. In addition they can also help with the defence against nematodes. These shells have many different structures like the one with spiral shapes helps for better hiding from predators .

Snails are also capable of regenerating the broken shell which is also an adaptation strategy .

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What are the four factors that leads to habitat degradation?

Answers

The four factors that leads to habitat degradation are,

1. Farming, first the agriculture sector is the one that receives the greatest criticism.

2. Business Numerous habitats are destroyed by powerful firms and corporations.

3. Noxious species Another significant factor in the loss of native species is the introduction of invasive species into areas.

4. Growing Population and Needs Human population and requirements are both rising quickly.

As a result of the extensive use of land for industrial farming, runoff is another problem that adds to pollution and habitat deterioration. A lot of fertilisers, insecticides, and other items with toxic compounds are frequently needed for farming. These compounds were once used to safeguard and encourage the growth of crops.

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an epithelial or covering cell malignant tumor is referred to as a(n):

Answers

Carcinoma. Carcinoma refers to a malignant neoplasm of epithelial origin or cancer of the internal or external lining of the body.

Is carcinoma cancer serious?

Untreated squamous cell carcinoma of the skin can destroy nearby healthy tissue, spread to the lymph nodes or other organs, and may be fatal, although this is uncommon. The risk of aggressive squamous cell carcinoma of the skin may be increased in cases where the cancer: Is particularly large or deep.

Can carcinoma be cured?

Some forms of carcinoma can be cured with early detection and early treatment. For instance, basal cell carcinoma (BCC) has a 100% five-year survival rate. This means that people with BCC are just as likely to be alive five years after diagnosis as someone without a BCC diagnosis.

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Organisms living in a forest ecosystem rely on the Sun as a source of energy for metabolic processes. The following events occur as energy is captured by a plant
and used in the metabolic processes of an herbivore.
Light
[A] Energy is released from chemical bonds.
[B] Energy is stored in large organic molecules..
[C] Energy is transferred to molecules of ATP.
[D] Energy is absorbed by plant cells.
The most likely order in which these events occur is

Answers

A) The bonds between chemicals give off energy. occasions happen as energy is caught by a plant and utilized in the metabolic cycles of a herbivore Light.

How do ecosystem organisms get their energy from the sun?

Life on Earth is powered by energy from the Sun. Photosynthesis is the process by which plants, algae, and cyanobacteria convert carbon dioxide and water into organic compounds like carbohydrates. The biosphere's primary source of organic material is this process.

Which organisms are capable of producing their own food by utilizing the sun's energy?

An autotroph is an organism that can use light, water, carbon dioxide, or other chemicals to make its own food. Autotrophs are sometimes referred to as producers due to the fact that they make their own food. The most well-known autotroph is the plant, but there are many other autotrophic organisms.

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Answer:

D

Explanation:

Enzyme A catalyzes a cellular reaction found in a wide range of species. The table shows data collected on the turnover numbers of Enzyme A purified from two of these species. In both cases, the same conditions were used to measure turnover numbers. Which statement is consistent with these data

Answers

ΔG for the two reactions is the same, but the energy of activation for the reaction catalyzed by the mollusk enzyme is lower than the energy of activation for the reaction catalyzed by the bacterial enzyme.

Enzymes are proteins that act as biological catalysts by hastening chemical reactions. Substrates are molecules that enzymes may interact with, and the enzyme converts the substrates into other compounds known as products.

An enzyme is a substance that works as a catalyst in living organisms, controlling the pace at which chemical reactions occur while remaining unaffected. Enzymes play a vital role in decreasing a reaction's activation energy—the amount of energy required for the reaction to begin. Enzymes function by attaching to reactant molecules and keeping them in place so that chemical bond-breaking and bond-formation activities may occur more easily.

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The objects in this photo belong to which major sphere of the Earth system?

Answers

i think it’s geosphere??

What is an example of Mendelian trait that we find in humans?

Answers

Albinism and Huntington's disease are two instances of human autosomal Mendelian traits. Phenylketonuria is another example of a human mendelian trait: This illness is an illustration of a Mendelian trait since it is passed down from parents to children when both parents have heterozygous (Aa) and homozygous (Aa) circumstances. 

Human characteristics known as Mendelian traits are those that are heavily influenced by Mendelian inheritance. Mendelian inheritance is the term used to describe how qualities that are regulated by a single gene with two alleles, one of which may be dominant to the other, are passed down from parent to child. Even though just a few human features are governed by a single gene with two alleles, they provide a solid foundation for learning about human heredity.

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if an st elevation myocardial infarction converts to a non-ST elevation myocardial infarction in the course of thrombolytic therapy, how is it coded

Answers

STEMI that converts to a NSTEMI in the course of thrombolytic therapy is coded as an NSTEMI using the I21.x code. If thrombolytic therapy was administered, this should be documented separately using an appropriate code.

If an ST elevation myocardial infarction (STEMI) converts to a non-ST elevation myocardial infarction (NSTEMI) during thrombolytic therapy, it is coded as an NSTEMI. The code used to identify myocardial infarction is I21.x, and the fourth and fifth digits indicate the type of myocardial infarction. For STEMI, the fourth and fifth digits are 0, indicating a STEMI. For NSTEMI, the fourth and fifth digits are 1, indicating a NSTEMI.

The conversion of a STEMI to a NSTEMI can occur when thrombolytic therapy is successful in opening a blocked artery. When this occurs, the patient’s condition improves and the ST elevation disappears from the electrocardiogram (ECG), indicating that the myocardial infarction is now a NSTEMI.

When coding for a NSTEMI, it is important to note that the NSTEMI code does not indicate the presence of thrombolytic therapy. The code is simply used to indicate that the patient has experienced an NSTEMI. If the patient received thrombolytic therapy, this should be documented separately using an appropriate code, such as ICD-10-CM code Z94.30 (thrombolytic therapy).

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What is the probability that a child born to two carriers of a recessive disorder allele will have the disorder?

Answers

The probability that a child born to two carriers of a recessive disorder allele will have the disorder is 25% can be calculated by the pedigree analysis.

When two carriers of a recessive disorder allele have a child, each parent will pass on one of their two copies of the allele to the child. Since each parent is a carrier, there is a 50% chance that the child will inherit one copy of the allele from each parent. When both copies of the allele are inherited, the child will have the disorder because the disorder only occurs when both copies of the allele are present.

The probability that the child will inherit one copy of the allele from each parent is (1/2) x (1/2) = 1/4 = 25%. Therefore, the probability that a child born to two carriers of a recessive disorder allele will have the disorder is 25%.

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Categorize all the components involved in photosynthesis as either matter or energy!

Answers

Energy and matter are also produced during photosynthesis. Chemical energy in the form of glucose and matter in the form of oxygen gas is produced during photosynthesis.

The process by which plants convert carbon dioxide, water, and sunshine into oxygen and sugar-based energy is known as photosynthesis. The four stages of photosynthesis include light absorption, electron transfer, ATP production, and carbon fixation. The main purpose of photosynthesis is to transform solar energy into chemical energy, which is then stored for later use. This mechanism primarily provides energy to the planet's life systems. By the norms of human engineering, it is not particularly effective, but it gets the job done.

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