Answer:Biotechnology is a broad area of biology, involving the use of living systems and organisms to develop or make products. Depending on the tools and applications, it often overlaps with related scientific fields
biology the laws and phenomena relating to an organism or group
Biology: The study of living organisms is called biology
Biotechnology: Application of technologies in the field of biology.
What is the difference between biology and biotechnology?Biotechnology is a subfield of biology, which is a science. Biotechnology is the use of biology for human benefit, whereas biology is the study of living things. Biotechnology uses a variety of methods, such as the genetic engineering of bacteria, to produce industrial goods.
The anatomy of living things is what distinguishes biology from biotechnology. The anatomy and physiology of living things are the main topics of biology. Contrarily, biotechnology is concerned with technology. It has nothing to do with the least important aspects of a living thing's anatomy and physiology.
Hence, this is a detailed explanation of biology and biotechnology.
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Which of the following is the primary source of mass in a plant?
Water
Soil
Air
Sunlight
Answer: Water
Explanation:
Your Welcome
Answer:
sunlight
Explanation:
Why pollutants enter in plasma membrane despite its semi permeable nature?
Ransmembrane proteins called cell-surface receptors bind to signal molecules in the extracellular environment to produce various intracellular signals.
Because it controls how chemicals enter and exit cells, the plasma membrane is referred to as semi-permeable. This indicates that only some compounds may enter the plasma membrane while other materials cannot travel past it. Controlling the flow of substances through the cell membrane is one method a cell uses to keep its internal environment in balance. Small, nonpolar molecules selectively pass through the lipid bilayer. Cell-surface indicators, receptor proteins, enzymes, and transport proteins are only a few of the proteins found in cell membranes.
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how did darwin come to think that finches from the galapagos are related to the finches of south america
Voyage of the Beagle: Darwin embarked on a voyage on the HMS Beagle, which lasted from 1831 to 1836.
During this expedition, he visited the Galapagos Islands in 1835. Darwin collected numerous specimens, including finches, from various islands in the Galapagos archipelago.Variation in Beak Shape: While examining the finches he collected, Darwin noticed that the different species of finches on the Galapagos Islands had distinct variations in their beak shapes and sizes. He observed that each species seemed to have a beak adapted to a specific type of food source available on its respective island.Comparison with South American Finches: Darwin compared the finches from the Galapagos Islands with the finches he had previously collected from mainland South America. He noticed similarities in the overall body structure and behavior between the Galapagos finches and the South American finches.
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Gibberellins are hormones produced in the root tips of plants. The plant uses these hormones
to stimulate the growth of shoots.
How are gibberellins able to affect other parts of the plant?
F Gibberellins are absorbed through the stomata and attach to chloroplasts.
G Gibberellins are transported through vascular tissues to other parts of the plant.
H Gibberellins become concentrated within the tissues of the plant during mitosis.
J Gibberellins become modified once they infect healthy cells and are later released to infect
other cells.
Answer:
Gibberellins are transported through vascular tissues to other parts of the plant.
Explanation:
I just took the test.
Gibberellins are able to affect other plants through their transport through vascular tissues to other parts of the plant.
Gibberellins hormones are produced in the meristem of plants and they stimulate growth. They affect other plants through the plant's vascular system.
What is plants vascular system?Plant vascular systems are conducting tissue that helps in the transport of materials such as water, minerals, organic compounds including hormones in plants and other nutrients.
This vascular tissue allows for the movement of gibberellin to other parts of plants.Therefore, Gibberellins are able to affect other plants through their transport through vascular tissues to other parts of the plant.
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Ethics aside, is there a possibility that gene therapy can go
extremely wrong where it does fix the problem, but it causes a
completely different problem as well?
Gene therapy is a promising field of medicine that can bring hope to millions of people suffering from genetic diseases. However, it should be approached with caution and ethical considerations to minimize the risks and maximize the benefits.
Gene therapy is a medical treatment that aims to repair or replace the defective genes that cause genetic disorders. It's a complex and sensitive procedure that requires a deep understanding of human genetics and advanced technology. Although gene therapy has the potential to treat and cure many genetic diseases, it's not without risks and ethical considerations.
Therefore, it's essential to weigh the benefits against the risks before deciding to use gene therapy. So, the answer to the question is Yes, there is a possibility that gene therapy can go extremely wrong and cause unexpected side effects, even if it fixes the primary problem.
Gene therapy can be harmful in several ways, such as:
Off-target effects: Gene therapy can accidentally target the wrong cells or genes, leading to unpredictable and potentially harmful outcomes.
Immunological reactions: The immune system may see the modified cells as foreign and attack them, leading to inflammation and tissue damage.
Tumorigenesis: Gene therapy may activate oncogenes or inactivate tumor suppressor genes, leading to the formation of cancerous cells in the treated area.
Moreover, there's always the risk of transmitting the modified genes to future generations, raising ethical concerns about the safety and implications of gene therapy.
Therefore, scientists and regulators should conduct extensive preclinical and clinical studies to ensure the safety and efficacy of gene therapy before it's used in humans.
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lipid-soluble materials enter and exit the cell via
Lipid-soluble materials enter and exit the cell primarily through the process of simple diffusion across the cell membrane. The cell membrane is composed of a phospholipid bilayer, which has a hydrophobic interior.
Lipid-soluble or hydrophobic molecules, such as oxygen, carbon dioxide, and steroid hormones, can freely diffuse through the lipid bilayer. They move from an area of high concentration to an area of low concentration until equilibrium is reached.
This process is known as simple diffusion and does not require the use of energy or the involvement of transport proteins. The lipid-soluble materials dissolve in the lipid portion of the membrane and pass directly through it.
In contrast, hydrophilic or water-soluble molecules, such as ions and polar molecules, cannot easily pass through the lipid bilayer. They typically require the assistance of specific transport proteins, such as channel proteins or carrier proteins, to cross the cell membrane.
In conclusion, lipid-soluble materials can enter and exit the cell via simple diffusion through the lipid bilayer of the cell membrane. This process allows for the passive movement of lipophilic molecules across the membrane without the need for energy or specialized transport proteins.
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what is the structure of bacteria?
what is the structure of a virus?
Structure of a virus
Explanation:
At the center of all viruses the DNA or RNA is found enclosed by the capsid. The Capsid is a capsomere (type of protein) coat that is designed to protect the DNA or RNA.
The capsomere contains genes that allow the virus to transfer its nucleic acid into the host cell.
There's an argument that is often made by scholars and texts that the nucleus is the brain of the cell because that is where all of the information is stored. But, the nucleus doesn't really do much other than house information. Does that make it a brain or a warehouse? Others argue the cell membrane is where all the real action happens. Sir Roger Penrose, one of the most famous mathematicians of all time, argued that cellular consciousness resides in the quantum vibrations of the microtubules in the cytoskeleton. What do you think?
The debate centers around whether the nucleus or the cell membrane is the "brain" of the cell, with the nucleus storing information and the membrane playing a dynamic role in cellular processes. The hypothesis of cellular consciousness residing in microtubules is intriguing but requires further research.
The concept of whether the nucleus can be considered the "brain" of the cell or if cellular consciousness resides in the microtubules is a topic of scientific debate. The nucleus plays a crucial role in storing and regulating genetic information, which is essential for cell function and development. However, it does not possess the complex processing and decision-making capabilities typically associated with a brain.
On the other hand, the cell membrane plays a vital role in various cellular processes such as communication, transport, and signal transduction. It acts as a selective barrier and regulates the flow of substances in and out of the cell, influencing its overall behavior and interactions with the environment.
The hypothesis proposed by Sir Roger Penrose regarding cellular consciousness and the role of microtubules in the cytoskeleton is intriguing but not yet widely accepted. Further research is needed to understand the nature of consciousness at the cellular level and the potential involvement of quantum vibrations.
In summary, while the nucleus is essential for genetic information storage, the cell membrane plays a more dynamic role in cellular processes. The idea of cellular consciousness and the specific role of microtubules is still a subject of ongoing scientific exploration.
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Can someone please give me an explanation for Interphase and what happens in interphase?
I will mark brainliest
Please dont copy and paste
Answer:
In Interphase The cell grows in the (G1) phase, replicates DNA in the (S) phase
then prepares for mitosis in the (G2) phase. This all happens in Interphase. Hope this helps!
Explanation:
Scientists examined the folded structure of a purified protein resuspended in water and found that amino acids with nonpolar R groups were primarily buried in the middle of the protein, whereas amino acids with polar R groups were primarily on the surface of the protein. Which of the following best explains the location of the amino acids in the folded protein?
a. Polar R groups on the surface of the protein can form ionic bonds with the charged ends of the water molecules.
b. Polar R groups are too bulky to fit in the middle of the protein and are pushed towards the protein's surface.
c. Nonpolar R groups that cannot form hydrogen bonds with water are pushed into the middle of the protein.
d. Nonpolar R groups from different parts of the protein form covalent bonds with each other to maintain the protein's structure.
Answer:
hello there
Explanation:
answer is c
The nonpolar R groups that cannot form hydrogen bonds with water are pushed into the middle of the protein. The correct option is c.
What is hydrogen bond?A hydrogen bond is an electrostatic force of attraction between a hydrogen atom that is covalently bound to a more electronegative "donor" atom or group and another electronegative atom with a single pair of electrons means the hydrogen bond acceptor.
Also because the electron is not shared evenly between such a hydrogen atom as well as a negatively charged atom, hydrogen bonding occurs.
Hydrogen in a bond still has one electron, whereas a steady electron pair requires two electrons.
Nonpolar R groups that cannot form hydrogen bonds with water have been pushed into the protein's core.
Thus, the correct option is c.
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20 POINTS
ARE NATURAL GAS RENEWABLE OR NON-RENEWABLE?
CRITICAL THINKING
4. Identify Breathing is required for cellular respira-
tion. Use the reactants, products, and stages of cel-
lular respiration to explain why breathing is required.
Breathing is necessary for the process of cellular respiration because cells need oxygen that is present in the air to derive energy from glucose by means of cellular respiration. Carbon dioxide and water are the products formed by this process.
Breathing is the process by which oxygen is inhaled and carbon dioxide is exhaled. Cellular respiration is an important process through which energy is produced when oxygen reacts with glucose (C₆H₁₂O₆) , and thereby generating carbon dioxide and water as by-products. The process can be summarized in the form of the following equation:-
C₆H₁₂O₆ + 6O₂ → 6CO₂ + 6H₂O + Energy
(Reactants) (Products)
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Why is tetanic tension so much greater than twitch tension?
Tetanic tension is much greater than twitch tension due to the differences in their underlying physiological processes and the frequency of muscle stimulation.
Twitch tension refers to the force generated by a single muscle contraction in response to a single, brief stimulus. It is a short and quick response, which does not allow the muscle fibers to fully develop their force-generating capacity.
In contrast, tetanic tension occurs when a muscle is stimulated at a higher frequency, causing a series of rapid, repeated contractions. This results in summation, where the force generated by each subsequent contraction is added to the force of the previous contractions. As a result, the muscle fibers are able to produce more force in total than they could during a single twitch contraction.
Additionally, during tetanic tension, the muscle experiences a sustained period of calcium influx. This increased calcium concentration allows for more cross-bridge cycling between actin and myosin filaments, resulting in higher force production. Moreover, the repeated stimulation prevents the muscle fibers from fully relaxing between contractions, allowing them to maintain a higher level of tension.
In summary, tetanic tension is much greater than twitch tension because of the summation effect, the sustained calcium influx, and the increased cross-bridge cycling. These factors allow muscles to generate a significantly higher force during tetanic contractions compared to a single twitch contraction.
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need an answer asap! will give brainliest :)
Why does mitosis/asexual reproduction occur in all organisms?
Answer:
Asexual reproduction is the duplication of the genetic material from a parent organism to create a new organism.
Explanation:
In mitosis also the cell first makes the division of DNA or nucleus after that the division of cytoplasm takes place and thus the parent cell divides itself into 2 daughter cells which are like each other.
Why do both mitosis AND asexual reproduction occur in all organisms?
Answer: Mitosis is a form of asexual reproduction in simple living organisms. The outcome of each cell cycle is two identical cells. ... Errors must be corrected or division halted because too many or too few chromosomes can harm the new cells. Sexual reproduction happens through meiosis.
Multiple species of lizard feed on insects in the Caribbean islands. One
species of lizard lives on the ground, while another lives on tree branches.
Which statement is true of these two lizard species?
A. They have adapted to different niches due to competition.
B. They have adapted to different niches due to predation.
C. They have a mutualistic relationship with the insect species.
O D. They have the same niche: the Caribbean islands.
The two species of lizards have adapted to different niches to avoid competition. Therefore, option"A" is correct.
What is an ecological niche?
An ecological niche is the particular habitat of a particular species in an ecosystem. The term was coined by Joseph Grinnell in 1917. The selection of a niche depends on the environmental condition, to avoid competition and availability of the food. The different types of niches are spatial niches, tropical niches, and hypervolume niches.
Habitat is defined as the coexistence of abiotic and biotic things. Examples of habitats are the ocean and forests. A niche whereas is an inclusive space occupied by species in a habitat.
The ecological niche is occupied by a species of organism to avoid competition.
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How does DNA analysis help scientists better understand evolution
In a secondary battery, the voltaic cells are periodically ___ to electrolytic cells to restore the starting nonequilibrium concentration of the cell components.
In a secondary battery, the voltaic cells are periodically converted to electrolytic cells to restore the starting nonequilibrium concentration of the cell components.
Here's a step-by-step explanation to help you understand this process:
A secondary battery, also known as a rechargeable battery, consists of voltaic cells that produce electrical energy through a redox reaction between the electrode materials and the electrolyte. Over time, as the battery discharges, the redox reaction causes the concentrations of the reactants and products to change, and the cell reaches an equilibrium state. This leads to a decrease in the cell's voltage and energy output.
To restore the starting nonequilibrium concentration of the cell components and regain the battery's initial capacity, the voltaic cells need to be converted into electrolytic cells.This conversion is achieved by applying an external voltage to the secondary battery, which is greater than its current voltage. This external voltage forces the redox reaction to occur in the opposite direction, effectively recharging the battery.
As the electrolytic process continues, the concentrations of the reactants and products return to their original nonequilibrium state. This re-establishes the initial voltage and energy capacity of the battery.Once the battery is fully charged, the external voltage is removed, and the secondary battery returns to its original state as a voltaic cell, ready to provide electrical energy again.
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Question 10
Which of the following sequences represents chromosome number during fertilization of sperm and egg?
A. n+n —>2n
B. 2n —> n+n
C. n —> n
D2n—> 2n
The sequences represents chromosome number during fertilization of sperm and egg is n+n->2n and Sperm and egg are haploid, but fertilized egg is diploid.Thus, option A is correct.
What is role of chromosomes?During this crossing, the vegetative nucleus degenerates, while the reproductive nucleus (n chromosomes) divides into 2 male nuclei or spermatozoa, each with n chromosomes. These are the male gametes of flowering plants.
One of the spermatozoa unites with the oosphere and gives the zygote (at 2n). After this fertilization, the egg is transformed into seed while the ovary develops into fruit containing one or more seeds. The other parts of the gynoecium and the flower usually disappear.
The term pollination has been defined as the transfers pollen from one flower to another. Pollen containing sperm is transferred to the female flower parts and fertilization of an egg soon follows.
Therefore,The sequences represents chromosome number during fertilization of sperm and egg is n+n->2n and Sperm and egg are haploid, but fertilized egg is diploid.Thus, option A is correct.
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This is an autoimmune disease in which the thyroid is overactive, and produces excessive amounts of thyroid hormones:
The autoimmune disease in which the thyroid is overactive and produces excessive amounts of thyroid hormones is called: Graves' disease.
Graves' disease is characterized by the overproduction of thyroid hormones, leading to symptoms such as weight loss, increased heart rate, and anxiety. It occurs when the immune system mistakenly attacks the thyroid gland, causing it to produce more hormones than the body needs.
Treatment for Graves' disease may include medications to control hormone levels, radioiodine therapy, or surgery to remove the thyroid gland.
In addition to medication, radioiodine therapy, and surgery, other treatment options for Graves' disease may include beta-blockers to help control symptoms such as rapid heart rate and anxiety. Regular monitoring of thyroid hormone levels is important to ensure that hormone levels are within the normal range.
Some individuals with Graves' disease may also benefit from lifestyle changes such as stress management techniques and a healthy diet to support overall well-being. With proper treatment, most individuals with Graves' disease are able to effectively manage their symptoms and lead normal, healthy lives.
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Which of the following is the basis for the explanation of the origin of life on
Earth?
Organic matter was the original matter on Earth.
Organic matter produced inorganic matter on Earth.
The lack of ozone layer allowed simple organic matter to produce more complex
organic matter.
Inorganic matter produced organic matter on Earth.
Organic matter produced inorganic matter on Earth.
Any of the numerous carbon-based substances found in nature are considered to be organic matter.
What about organic matter?The term "organic matter," "organic material," or "natural organic matter" describes the significant source of carbon-based substances present in both naturally occurring and artificially created terrestrial and aquatic settings. It is material made up of organic components that were once part of plants, animals, and other living things. Any dead or alive animal or plant material is considered organic matter. Animal and plant remains in various phases of decomposition, living plant roots, microbes, and their excretions are all included. Anything that contains carbon compounds made by living things is considered to be organic matter.It includes, among other things, grass clippings, leaves, twigs, branches, moss, algae, lichens, any animal parts, sewage sludge, sawdust, insects, earthworms, and germs. The major components of organic matter are the living organisms in the soil ("the living"), the fresh residue ("the dead"), and the well-decomposed (or burned) stuff ("the very dead"). There is dissolved organic matter (DOM) in all types of water, including freshwater and marine ones. It is a heterogeneous combination made mostly of bacteria, algae, and the byproducts of plant degradation.Learn more about organic matter here:
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Does tap water need to resist shifts in pH? Why
or why not?
The conversion of carbonic acid to CO2 raises the pH level. People rarely need to adjust the alkalinity of their drinking water. Because alkalinity acts as a buffer to reduce pH swings, tap water should have a low alkalinity level.
Why is water's pH significant?Most chemical and biological processes in water are influenced by pH. It is a major environmental factor limiting species distributions in aquatic habitats. Different species thrive in different pH ranges, with most aquatic organisms flourishing between pH 6.5-8. The pH of water used for drinking or cooking is critical. Water that is too alkaline or too acidic is generally unhealthy to drink and can damage appliances and pipelines. Water pH levels are typically between 6.5 and 8.5, which is considered normal. The pH of a solution is a measure of its acidity or alkalinity, as well as its concentration of hydrogen ions. Normally, the pH scale ranges from 0 to 14.
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From where do we get nitric oxide
Answer:
Nitric oxide is found in supplements but if you want it naturally it comes in red meat,poultry,fish, and dairy such as milk cheese and etc. I hope this answers your question.
Give the amino acid sequence for the following mRNA strand.
AUU GAA GUC ACG
Answer:
The answer to that amino acid sequence is
UAA CUU CAG UGC
To draw reliable conclusions from data, the data
Answer:
The correct answer is - must be honest and without bias or later change.
Explanation:
In an experiment to get the reliable and desired result, one should get collect the data from all possible sources and note it down for reference. This data should not be bias or not influenced by any external factor and solely based on the experiment or associated with the experiment.
Data that is calculated should not be change or edit to support the result or if not getting the desired result. Data should remain unchanged for an honest and unbiased experiment or investigation.
The tropical rainforest is the most coplex and species rich biome in the world but it is soils are nutrient poor . What is the reason for this
Answer:
because nutrients cannot be stored in the soil for a long time
Explanation:
In rainforests, high temperatures and humid conditions lead to the rapid decomposition of the organic matter in the soils, which releases nutrients rapidly. However, rainforest soils are poor in nutrients due to rains that wash dead organic material from them. Moreover, rainwater is filtered naturally into the ground, thereby extracting (leaching) nutrients off the surface.
Describe Write a paragraph that describes the four laws governing radiation. Use examples wherever possible.
Answer:
Kirchhoff's Law describes the linkage between an object's ability to emit at a particular wavelength with its ability to absorb radiation at that same wavelength. In plain language, Kirchhoff's Law states that for an object whose temperature is not changing, an object that absorbs radiation well at a particular waveleng i think this is the right answer
Explanation:
The four laws governing radiation are: Stefan-Boltzmann Law, Wien's Displacement Law, Lambert's Cosine Law and Beer-Lambert Law.
Wat are the laws governing radiation?
The four laws governing radiation are:
Stefan-Boltzmann Law: The total energy radiated by a black body is proportional to the fourth power of its temperature (e.g., a hot stove radiates heat).
Wien's Displacement Law: The wavelength at which a black body radiates most intensely is inversely proportional to its temperature (e.g., a red-hot iron emits longer-wavelength infrared radiation than a white-hot iron).
Lambert's Cosine Law: The radiant intensity of a surface is directly proportional to the cosine of the angle of incidence (e.g., sunlight appears more intense when it strikes a surface at a perpendicular angle).
Beer-Lambert Law: The absorption of radiation by a substance is directly proportional to its concentration and path length (e.g., the absorption of light by a colored solution increases with the concentration of the solute).
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what increases extra fluid in the blood increasing blood pressure?
An increase in extra fluid in the blood can increase blood pressure. This can be caused by several factors, including: Excess salt intake, Kidney problems ,Hormonal imbalances, Obesity, Sedentary lifestyle.
Excess salt intake: Consuming too much salt can cause the body to retain water, which can increase the volume of blood in the circulatory system and raise blood pressure.
Kidney problems: The kidneys help regulate the body's fluid balance and remove excess fluid from the blood. If the kidneys are not functioning properly, excess fluid can accumulate in the blood, leading to high blood pressure.
Hormonal imbalances: Certain hormones, such as aldosterone, can cause the body to retain salt and water, leading to an increase in blood volume and blood pressure.
Obesity: Excess body weight can increase blood volume and put additional strain on the circulatory system, leading to high blood pressure.
Sedentary lifestyle: Lack of physical activity can also contribute to excess fluid in the blood, as the circulatory system is not stimulated enough to properly regulate fluid balance.
Overall, It is important to note that high blood pressure can have serious health consequences if left untreated, including an increased risk of heart disease, stroke, and kidney damage.
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Which molecule most likely requires active transport to move across the plasma membrane?
The molecules requiring active transport to move across plasma membrane are Na+, K+, calcium and white blood cells.
Active Transport:
Active transport is the movement of molecules across the plasma membrane from lower concentration to Higher concentration active transport requires energy (ATP) for the movement of these molecules.
There are many molecules which requires energy for moving across the plasma membrane some of those molecules are sodium and potassium, movement of calcium ions in cardiac muscles, amino acid transport across intestinal linings in human gut and this active transport also takes place in white blood cells to defend attacking diseases.
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features of xerophytes
Answer:
Xerophyte survival characteristics:
Thick cuticle.
Stomatal closure.
Reduction in # of stomata.
Stomata hidden in crypts or depressions in leaf surface (less exposure to wind and sun).
Reduction in size of transpiration surface (lower leaf only).
Increased water storage.
Explanation:
Xerophyte adaptations increase water intake, limit water loss, and store water efficiently. Water intake adaptations include deep or widespread roots, and high salt content to increase osmosis. Xerophytes have thick cuticles, lost or finely divided leaves, reduced stomata, and CAM photosynthesis
Explain how the information from stimuli can become a memory or result in a behavior. WILL GIVE BRAINLIEST IF CORRECT!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
Answer: look at the picture
Explanation: Hope this help :D
Answer:
I tried it for the person above me and it worked Thanks!!
Explanation: