What will most likely happen to a plant that does not receive enough sunlight?

Answers

Answer 1
The Calvin cycle will produce less glucose
Answer 2

Answer:

If the plant does not receive enough sunlight, photosynthesis will be compromised, or it will not occur.

Explanation:

Photosynthesis is a process carried out by plants to produce the energy necessary for their survival. If photosynthesis is not done, or is done poorly, the plant will eventually die.

For photosynthesis to occur, it is necessary for the plant to receive enough sunlight to start this process.

Water and mineral salts are removed from the soil through the root of the plant and reaches the leaves through the stem in the form of sap, called raw sap. Sunlight, in turn, is also absorbed by the leaf, through chlorophyll, a substance that gives the leaves a green color. Then chlorophyll and solar energy turn the other ingredients into glucose. This substance is carried along the existing channels in the plant to all parts of the plant. She uses part of this food to live and grow; the other part is stored in the root, stem and seeds, in the form of starch.


Related Questions

The primary sources of renewable energy in the us are

Answers

Honestly this could be correct and you can mark me as Brainliest, the answers are : 
Solar, geothermal, and hydropower. 

Which statement describes the formation of the Milky Way galaxy?

1) A disk formed of long trails of stars coiled into a spiral.

2) It formed an elliptical flattened disk.

3) Heat and gases contracted within a nebula.

4) Gravity pushed stars away from a center core.

Answers

Your Answer:

A.) A disk formed of long trails of stars coiled into a spiral

Hope this helps y'all :)

Looking through a light microscope at a cell undergoing meiosis, you see that the chromosomes have joined into xx-shaped tetrads. these tetrads are lined up along a plane that runs through the center of the cell. this cell is in _____. looking through a light microscope at a cell undergoing meiosis, you see that the chromosomes have joined into xx-shaped tetrads. these tetrads are lined up along a plane that runs through the center of the cell. this cell is in _____. interphase meiosis i meiosis ii cytokinesis of meiosis ii

Answers

The correct answer is "meiosis I".

More specific answer is the metaphase of meiosis I wherein two chromosomes line up side by side in tetrads and will be separated in the anaphase of meiosis I as pairs of chromosomes (in contrast to mitosis wherein chromatids are separated instead of chromosomes). This is because the goal of meiosis I to reduce the chromosome number into haploid therefore called reduction division.
Final answer:

The cell is in Meiosis I, during Prophase I the chromosomes join into tetrads that line up along a plane in the center of the cell.

Explanation:

The cell that is in question is in Meiosis I. During Prophase I, the chromosomes join into xx-shaped tetrads. These tetrads line up along a plane that runs through the center of the cell, forming the metaphase plate. The orientation of each tetrad is independent of the orientation of other tetrads, making the arrangement of tetrads random.

Which of the following would be considered a benefit of overproduction?

A) The exponential growth of a population
B) The survival of the fittest due to competition for resources
C) The exchange of genetic material between populations
D) The change in an ecosystem due to the increased population

Answers

I believe the answer is B, the survival of the fittest due to competition for resources. Survival of the fittest is a term that originated from Darwinian evolutionary theory was a way of describing the mechanism of natural selection. The biological concept of fitness is  defined as reproductive success. Many organism overproduce to increase chances of survival for their organisms due to competition. 

Answer:

The correct answer is option B) "The survival of the fittest due to competition for resources"

Explanation:

Darwinian evolutionary theory explains that natural selection allows for the species improvement by the "survival of the fittest". Overproduction in a defined ecosystem would eventually lead to species improvement due to competition for resources. More individuals of animals and plants would need more resources to survive, the competition for resources would be a determinant factor for natural selection.

A 2-year-old child with developmental dysplasia of the hip has a spica cast applied. the mother asks the nurse how to keep the cast clean. how should the nurse respond?

Answers

Managed easily with lotion or oil. Some degree of discomfort is expected after cast application. Warm toes indicate intact circulation to the lower extremities. Peeling skin (desquamation) is the result of inadequate skin care. The child should receive a cool mist because it facilitates reduction of mucosal edema.

A snake that eats a mouse is an exampe of predationcompetitionmutualismparasitism.

Answers

parasitism mutualism commensalism. competition. A relationship in which different indiv or pop attempt to use the same limited resource. Competition Ex. eagles and bears. They both can go after fish. Predation. Organism that feeds upon it's prey. Predation Example. mouse and a snake. Snakes eat the mouse. Parasitism. 

Hope is helps in someway

a snake eating a mouse is predatation silly geese

Due to an increased risk of heart disease many doctors have suggested shifting our diet to include more oils instead of fats. as you cook dinner tonight the recipe calls for 2 tbs of oil. what is the most likely source of the oil you used in preparing your meal?

Answers

The most likely sources of oils used in preparing meals are olive and canola oils.


Hope this helps! :)

When deciding which oil is ideal for a heart patient, olive oil is among the healthiest possibilities. It's teeming with antioxidants that help strengthen your immune system, promote a healthy gut, improve circulation, and reduce inflammation.

What is the benefits of using oil instead of fats?

They completed surveys on their diet and way of life every four years. More than half a tablespoon of olive oil per day.

According to research, was associated with a 15% reduction in overall cardiovascular disease risk and a 21% reduction in coronary heart disease risk.

For energy and other purposes, your body requires healthy fats. However, consuming too much saturated fat can result in artery cholesterol buildup.

Bad cholesterol LDL is increased by saturated fats. Your risk of heart disease and stroke is increased by high LDL cholesterol.

Therefore, The most likely sources of oils used in preparing meals are olive and canola oils.

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How is mass spectrometry used for protein-protein interaction?

Answers

Mass spectrometry is used for protein to help build the muscle.

Comparative advantage emerges because of the presence of:

Answers

I think in macroeconomics this happens due to the presence of different opportunity costs. Opportunity cost. Opportunity cost is the benefit that an individual could have acquired, but gave up, to take another course of action. it represents an alternative given up when a decision is made. 

The acidity of the stomach contents triggers the small intestine to secrete a hormone known as ____

Answers

Answer:  "secretin" .
___________________________

Where are the proteins of the electron-transport chain located in chloroplasts?

Answers

electron transport chain is found in the inner mitochondrial membrane where it serves as the site of oxidative phosphorylation through the use of ATP synthase. It is also found in the thylakoid membrane of the chloroplast in photosynthetic eukaryotes.

The proteins of the electron-transport chain in chloroplasts are located in the thylakoid membrane, where they play a key role in the light-dependent reactions of photosynthesis.

The proteins of the electron-transport chain in chloroplasts are located in the thylakoid membrane. Chloroplasts capture the energy of light, where the water is split and oxygen is released during the light-dependent reactions of photosynthesis. The electron-transport chain is part of this process, where electrons are transferred through a series of redox reactions, extracting energy to form NADPH and to pump protons across the membrane, generating a proton motive force that drives ATP synthesis. The thylakoid membrane provides the necessary environment for these reactions, housing the electron-transport chain and other crucial components such as Photosystem I (PSI) and Photosystem II (PSII).

In eukaryotes, the electron transport chain in chloroplasts operates similarly to its counterpart in the mitochondria, though they are located in different structures within the cell. Both are essential for ATP production, though they differ in their initial source of electrons; in chloroplasts, the initial electrons come from the splitting of water molecules.

This is one of the three components of a nucleotide that contains phosphorus.

Answers

Final answer:

The component of a nucleotide that contains phosphorus is the phosphate group. It plays a vital role in forming the backbone structure of nucleic acids and is involved in DNA replication and RNA transcription.

Explanation:

The component of a nucleotide that contains phosphorus is called the phosphate group. Nucleotides are the building blocks of nucleic acids, including DNA and RNA, and consist of three parts: a nitrogenous base, a sugar (deoxyribose in DNA and ribose in RNA), and a phosphate group. The phosphate group, which contains a phosphorus atom, is critical in forming the backbone structure of nucleic acids and is involved in the process of DNA replication and RNA transcription.

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The attraction of water molecules to other kinds of molecules is called

Answers

Adhesion is the attraction of water molecules to other molecules of different substances.  Water molecules are said to be polar which means that the molecule has a slightly negative charge and a slightly positive charge. This property of water allows it to interact with other polar or charges substances making it attract to other molecules. 

Adhesion is the attraction of water molecules to other kinds of polar molecules, which occurs due to hydrogen bonding formed because of water's polarity, creating interactions with hydrophilic substances.

The attraction of water molecules to other kinds of polar molecules is known as adhesion. This phenomenon occurs because water molecules are polar, which means they have a partial positive charge on the hydrogen atoms and a partial negative charge on the oxygen atom. As a result of water's polarity, each water molecule can form hydrogen bonds with other polar molecules or ions, leading to this adhesive attraction. This forms the basis for many of water's unique properties, such as its ability to dissolve various substances, creating hydrophilic (water-loving) interactions. In contrast, molecules that do not mix well with water, such as oils, are described as hydrophobic (water-fearing).

Which of the following characteristics do bryophytes share with algae

Answers

The correct answer is letter C.
Bryophytes have biflagellate gametes and cuticle. The cuticle serves as the covering of the soft tissue of the plant which provides protection and prevents damages on the walls of the plants. The biflagellate gametes develop also as a form of protection as well. These plants have an aquatic ancestry because of their dependence on water for reproduction and survival. 
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How does the brain process visual information?​
a. ​information travels from the retina to the thalamus and then simultaneously to the primary visual cortex in the occipital lobe and the amygdala.
b. ​information travels from the pupil to the reticular formation and then sequentially to the primary visual cortex in the frontal lobe and the pons.
c. ​information travels from the lens to the hippocampus and then sequentially to the primary visual cortex in the temporal lobe and the hypothalamus.
d. ​information travels from the cornea to the amygdala and then simultaneously to the primary visual cortex in the parietal lobe and the thalamus?

Answers

a. ​information travels from the retina to the thalamus and then simultaneously to the primary visual cortex in the occipital lobe and the amygdala.

What is the difference between a primary group and a secondary gsandy?

Answers

People in a secondary group interact on a less personal level than in a g. Since secondary groups are established to perform functions, people’s roles are more interchangeable. A secondary group is one you have chosen to be a part of. They are based e where many people can meet close friends or people they would just call acquaintances. Secondary groups are groups in which one exchanges explicit commodities, such as labour for wages, services for payments, etc. Examples of these would be employment, vendor-to-client relationships, etc.The distinction between Primary and Secondary groups serves to identify between two orders of social organization through analysis of the group relationships and their nature.

Answer:

A primary group is a small group of people who interact over a relatively long period of time on a direct and personal basis. A secondary group is a group in which interaction is impersonal and temporary in nature.

Explanation:

sample answer

What does the phenotype of the transformed colonies tell you?

Answers

I believe the phenotype tells us that the bacteria have successfully been transformed with the plasmid because they grow under UV light indicating they received mutant form of GFP gene and grow on ampicillin so they got the ampicillin resistant gene. 

Final answer:

The phenotype of transformed bacterial colonies, such as color changes or unique colonial morphologies, indicates successful genetic transformation and the presence of the introduced plasmid.

Explanation:

The phenotype of transformed colonies provides insights into whether genetic transformation has occurred and to what extent.

When plasmids with a reporter gene, like the ones coding for a colored protein, are introduced into bacteria, the successful uptake of these plasmids by bacteria is indicated by a change in the colony's appearance, such as a new color.

This color change is a direct observation of colonial morphology, which varies based on the plasmid introduced. For instance, blue-white screening is a technique used to differentiate between bacteria that have been transformed with a plasmid containing an insert of DNA (white colonies) and those that have an empty plasmid (blue colonies).

Such observable traits or phenotypes confirm the presence of the plasmid within the bacteria.

Additionally, the appearance of different colonial morphologies on an agar plate or slant could indicate the presence of different bacterial species or mutations.

Electrophoresis can further verify the genetic characteristics of the colonies, helping to identify the clones and understand the underlying genetic changes, such as recombination events, responsible for the new phenotypes.

Describe two different types of eukaryotic asexual reproduction

Answers

Budding: A Type Of Asexual Reproduction When An Organism Is Developed Because Its Parents Divided Themself Into Two Equal Parts.

Fragmentation: A Type Of Asexual Reproduction Where An Organism Splits Off Into Fragments To Later Be Developed Into A Fully Mature Individual That Is A Clone Of The Original Organism

Expression of a cloned eukaryotic gene in a bacterial cell involves many challenges. the use of mrna and reverse transcriptase is part of a strategy to solve the problem of _____.

Answers

Out of the flowing given choices;

A) post-transcriptional processing.

B) electroporation.

C) post-translational processing.

D) nucleic acid hybridization.

E) restriction fragment ligation.

The answer is A. Bacteria do not have a complex post-transcriptional processing tool such as the one in eukaryotes cells. Therefore, they are not able to process pre-mRNA with introns, example splicing. Therefore, a fully processed mRNA is cloned into the bacterial cell so it is reverse-transcribed into cDNA by reverse transcriptase.  


Which organism has the highest percentage of adenine?

Answers

Yeast has the most important percentage of adenine with 31.3%, comparing to human which has 30.9% and other species like Streptococcus, Herring, and E.coli.

Generally, the percentage of adenine and thymine are equal, because they are linked together in the DNA, and the guanine and cytosine percentage are equal too. So if we have the percentage of adenine in the DNA of a species, we can figure out the other percentages.
Yeast is the organism with the highest percentage of Adenine. Adenine is a purine that is used in forming nucleotides of the nucleic acids. It has a variety of roles in biochemistry, in the form of energy-rich adenosine triphosphate and the cofactors nicotinamide adenine dinucleotide and flavin dinucleotide, and protein synthesis, as a component of DNA and RNA. It binds to thymine via two hydrogen bonds to help in stabilizing the nuclei acid structures.

What type of cells is yogurt and cheese made out of?

Answers

dairy cells..........

Final answer:

Yogurt and cheese are made from bacterial cells, particularly from Lactobacillus, Bifidobacterium, and Streptococcus species. These prokaryotic cells ferment milk sugars into lactic acid, causing milk proteins to denature and form yogurt and cheese.

Explanation:

The type of cells used in the production of yogurt and cheese are bacterial cells. These products are typically made using prokaryotic cells, specifically from bacteria such as Lactobacillus, Bifidobacterium, and Streptococcus species. These bacteria ingest the natural sugars found in milk and release lactic acid as a waste product. The accumulation of lactic acid causes the proteins in the milk to denature and form into either a viscous, semi-solid mass for yogurt or a solid mass for cheese.

Yogurt specifically is produced by fermenting milk with strains of bacteria such as Lactobacillus bulgaricus and Streptococcus thermophiles. These bacteria are rod-shaped (bacilli) and often arranged in pairs or short chains. Cheese, on the other hand, has been traditionally made by fermenting milk with a variety of bacteria and sometimes molds, depending on the type of cheese being produced. This process not only enhances the flavor but also preserves the milk, as fermentation products like yogurt and cheese tend to be more stable and less prone to spoilage.

The tissue called phloem has what function in vascular plants?

Answers

Phloem conducts sugars and other products downward from the leaves.

In dna replication, when the dna molecule separates into two strands:
a. it is possible to reconstruct perfectly all the information on the missing strand because one strand carries all the information needed to construct its complementary strand.
b. the rebuilding process begins, in which an enzyme connects the appropriate complementary base to the exposed base.
c. the cell is ready for prophase.
d. all of the above are correct.
e. only the first and second choices are correct.

Answers

I think the answer is D all of the above hope this helps

In DNA replication, when the RNA molecule separates into two strands,  it is possible to reconstruct perfectly all the information on the missing strand because one strand carries all the information needed to construct its complementary strand.

What is RNA ?

Ribonucleic acid is a polymeric molecule that plays important roles in gene coding, decoding, regulation, and expression. Nucleic acids include RNA and deoxyribonucleic acid.

RNA's primary function is to generate proteins through translation. RNA carries genetic information, which ribosomes translate into various proteins required for cellular processes. The three main types of RNA involved in protein synthesis are mRNA, rRNA, and tRNA.

Ribonucleic acid (RNA) is a vital biological macromolecule found in all living cells. It is primarily involved in protein synthesis, carrying messenger instructions from DNA, which contains the genetic instructions required for life's development and maintenance.

Thus, option D is correct.

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A patient with a history of cirrhosis tells the nurse that his abdomen seems to be getting larger and that he has gained 9.7 kg (20 lb) in the last 6 months. how will the nurse determine whether the abdominal enlargement is from accumulation of fluid or fat from the weight gain?

Answers

There are choices for this question namely:

A. by listening for a fluid wave
B. by percussing the abdomen for shifting dullness
C. by auscultating for lymph nodes
D. by stroking the abdomen to elicit the abdominal reflex

The correct answer is "by percussing the abdomen for shifting dullness". In a patient with liver cirrhosis, there is decreased production of the protein albumin which therefore decreases the plasma oncotic pressure which promotes the leakage of plasma to interstitial tissues as well as in the peritoneum. Excess fluid in the peritoneum is called ascites. By percussing the abdomen for shifting dullness, fat and fluid can be differentiated as dullness in fat remains static and dullness in fluid "shifts".

What is the difference between an epistatic gene and a hypostatic gene? an epistatic gene is dominant; a hypostatic gene is recessive. an epistatic gene produces only two phenotypes; a hypostatic gene produces four phenotypes. an epistatic gene masks the effects of another gene; a hypostatic gene is masked by the epistatic gene. an epistatic gene enhances the effects of another gene; a hypostatic gene reduces the effects of another gene. an epistatic gene masks the effects of another gene when the epistatic gene has one or more dominant alleles; a hypostatic gene masks the effects of another gene when the hypostatic gene has two recessive alleles?

Answers

Final answer:

Epistasis is an interaction between genes where one gene masks or interferes with the expression of another gene. The epistatic gene masks the effects of the hypostatic gene, and this can happen through dominant alleles or two recessive alleles. Phenotypes can be affected by the interaction between these genes, leading to a different number of phenotypes than usual.

Explanation:

Epistasis is an interaction between genes where one gene masks or interferes with the expression of another gene. The gene that does the masking is called the epistatic gene, while the gene being masked is called the hypostatic gene. Epistatic genes can have dominant alleles that mask the effects of the hypostatic gene, while hypostatic genes can be masked when they have two recessive alleles. The interaction between epistatic and hypostatic genes can affect the expression of phenotypes in different ways, such as producing fewer or more than the usual number of phenotypes.

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Scientists on the side of Earth opposite the epicenter of an earthquake detect mainly a. P waves. b. S waves. c. transverse waves. d. surface waves

Answers

Scientists detect mainly A. P Waves. I hope this helps :)

Answer:

a. P waves.

Explanation:

P. Waves are the fastest waves that a sismic activity releases, P. waves can travel through solids and liquids, this includes the inner layers of the planet, that is why if there is a lab on the opposite side of the epicentr of an earthquake it would detect mainly just P waves, since they are the only ones that can travel through the core of the earth.

Which body of water is often protected naturally from storms by barrier islands and also contains a mixture of fresh water and salt water?

Answers

The body of water, which is often protected naturally from storm by barrier island and also contain a mixture of fresh and salt water is ESTUARY.
An estuary refers to a partially closed body of water, that have one or more rivers flowing into it and which has a connection to the open sea. Because the fresh and the sea water meet at this point, the water is always a combination of salt and fresh water. A good example of an estuary in America is the Chesapeake Bay.

Through the digestion system, water is mainly absorbed in the A. gallbladder. B. stomach. C. large intestine. D. small intestine.

Answers

I would say D. small intestine

If you want an explanation, here it is

After leaving the stomach, water is absorbed mostly in the early segments of the
small intestine, the duodenum, and the jejunum. A small portion of all water absorption occurs in the stomach and the colonthe small intestine absorbs 6.5L/day, whereas the colon absorbs 1.3L/day.

I believe the answer is C large intestine hope this helps good luck.

DNA consists of four nucleotides (A, C, G, and T) joined together in a long chain. Which of the following would be the best method for randomly choosing the next nucleotide to add to an imaginary DNA segment?

Answers

blindly selecting from a bag filled with blue green red and yellow beads! :)

Blindly choosing from a bag packed with blue inexperienced crimson and yellow beads.

What is DNA?

Deoxyribonucleic acid (abbreviated DNA) is the molecule that contains genetic information for the improvement and functioning of an organism. DNA is product of two linked strands that wind around each other to resemble a twisted ladder — a form called a double helix. DNA is a linear molecule composed of four types of smaller chemical molecules known as nucleotide bases: adenine (A), cytosine (C), guanine (G), and thymine (T). The order of those bases is referred to as the DNA collection.

What is nucleotides and its function?

Nucleotides are a category of natural compounds that make up nucleic acid, the substance that defines hereditary trends of all dwelling organisms. Nucleotides are an important a part of DNA, RNA, and cellular feature, and they can serve many purposes depending on their structure and chemical substances.

What are the four varieties of nucleotides? adenine (A), cytosine (C), guanine (G), thymine (T).

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Why has the kingdom protista been abandoned? see concept 28.1 (page 592) view available hint(s) why has the kingdom protista been abandoned? see concept 28.1 (page 592) some protists are multicellular. the kingdom protista is not monophyletic. some protists are more closely related to plants, animals, or fungi than they are to other protists. some protists are as small as prokaryotes. the second and third answers are correct. submit?

Answers

The answer is the second and third answers. Kingdom Protista is a polyphyletic taxon, meaning they did not evolve from one common ancestor, unlike what you see from a monophyletic taxon. Because they come from multiple ancestors, they share more similarities with other organisms from other kingdoms, rather than themselves.  
Final answer:

The Kingdom Protista was abandoned because it was found to be a paraphyletic group, meaning not all descendants of its last common ancestor were included in the kingdom. This discovery was made possible due to advancements in molecular genetics revealing that some protists are more related to animals, plants, or fungi than they are to other protists.

Explanation:

The kingdom Protista, first suggested by Ernst Haeckel, used to include all eukaryotic organisms that did not fit the criteria for kingdoms Animalia, Fungi or Plantae. However, with the advent of DNA sequencing and molecular genetics, it has been discovered that some protists are more related to animals, plants, or fungi than to other protists.

As a result, the kingdom Protista has been disassembled as it does not represent a monophyletic group (a group of species that includes an ancestral species and all its descendants). This means that some descendants of its last common ancestor are excluded from the kingdom, making it a paraphyletic group and contradicting the principles of modern taxonomy.

Therefore, protist lineages originally classified into the kingdom Protista have been reassigned into new kingdoms or other existing kingdoms in light of new genetic relationships revealed through molecular genetics. Protists, however, continue to be a tremendously diverse group of eukaryotes dwelling in a variety of environments and exhibiting various forms of morphologies, physiologies, and ecologies.

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