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I know for sure cigarette smoke, asbestos, but I'm not sure about the other two.

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in the planning process, what is the role of strategic goals and plans?

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A strategic plan assists you in defining and communicating the path your organization will take over the following three to five years.

It incorporates your company's vision and purpose statements, as well as goals and activities to attain those goals. Strategic goals are significant because they influence priority setting, resource allocation, capability requirements, and budgeting. Individual and team objectives are used to focus and align all employees' efforts.

Input into the marketing, operations, information technology, and human resources plans for the coming years. Planning is a managerial role that entails identifying objectives and determining a course of action to achieve those objectives. Planning necessitates managers being aware of current environmental conditions and forecasting future conditions.

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two living species can share similar traits not inherited by a common ancestor.
True or false?

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A similarity between creatures known as homoplasy is one wasn't passed down through their common ancestor.

Species with such similar ancestries share traits?

It's likely that each species received these characteristics from such a common ancestor if different species have similar physical characteristics. Homologous structures are traits that are comparable to each other because they shared an ancestor. Structural homology refers to the shared bone structure in the forelimbs of mammals like humans, birds, and whales.

Do whales and birds share a same ancestor?

Whales, lizards, humans, and birds all have basic limb configurations in common. But how did such different creatures end up with the same kind of limb. The response is that, similar to how cousins may get a trait from their grandfather.

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True/false?cyclic amp phosphodiesterase is an enzyme that catalyzes the conversion

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True. An enzyme called cyclic amp phosphodiesterase is responsible for the conversion. In this study, the pathogenic bacteria Vibrio vulnificus was used to describe the enzyme.

CAMP phosphodiesterase (CpdA), which catalyzes the conversion of cAMP to AMP. Cyclic AMP (cAMP) phosphodiesterase-4 (PDE4) enzymes break down cAMP and support the compartmentalization of cAMP signaling by concentrating in specific intracellular locations and protein complexes.

The only enzyme that converts ATP into the second messenger 3′:5′-adenosine monophosphate (cyclic AMP) is adenylate cyclase (AC). Almost all eukaryotic cells can change how they operate by activating cyclic AMP-dependent protein kinase or cyclic AMP-gated ion channels. A membrane-bound enzyme called adenylyl cyclase produces the nucleotide cAMP inside of the cell from ATP.

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the plant obtains nitrogen from this beneficial symbiotic relationship. True/False

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Legumes and true rhizobia, another type of nitrogen-fixing soil bacterium, can cohabit together.

Are microbes dangerous?

While most germs are not hazardous, there are some that can. These bacteria are an illustration of a pathogen. Pathogens are microbes that can cause disease. They emit toxins that really can infect you and have a high sexual reproduction rate within your body.

How did bacteria get started?

The dirt, rocks, oceans, and even frozen snow are all habitats for bacteria on Earth. Many creatures, including plants, animals, and people, reside in or on other organisms. In the human body, bacterial cells outnumber human cells by a factor .

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A person was involved in a car accident and became unconscious due to excessive blood loss explain briefly how the blood lost will be restored​

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When a person loses a significant amount of blood due to an injury or accident, their body's first response is to try to stop the bleeding and prevent further blood loss. Once the bleeding has been controlled, the body will begin to restore the lost blood volume through a process called hemostasis.

Hemostasis involves several steps that work together to repair damaged blood vessels, stop bleeding, and restore blood flow to the affected area. These steps include:

Vasoconstriction: The damaged blood vessels will narrow, or constrict, to reduce the flow of blood to the affected area.

Platelet plug formation: Platelets are small, sticky cells in the blood that will clump together to form a plug over the injured area, sealing the blood vessels and stopping the bleeding.

Blood clotting: The injured area will also trigger a series of chemical reactions that result in the formation of a blood clot, which further seals the wound and stops the bleeding.

Fibrinolysis: Once the bleeding has stopped and the wound begins to heal, the body will break down the blood clot through a process called fibrinolysis.

After the bleeding has been controlled and the hemostasis process has begun, the body will start to restore the lost blood volume. This is done through the production of new blood cells, which are produced in the bone marrow. The new blood cells will eventually replace the lost blood volume, restoring the person's blood pressure, oxygen supply, and overall health.

In some cases, a blood transfusion may also be necessary to restore the lost blood volume more quickly. This involves transferring blood from a donor to the injured person, replacing the lost blood cells and helping to restore the person's health more rapidly.

Answer:

In order to restore blood lost from a car accident, the individual would need to receive a blood transfusion. This involves intravenously injecting donated blood of the same blood type as the patient into their body. A transfusion helps replace the lost red blood cells which carry oxygen throughout the body, restoring the lost volume and aiding in healing. Furthermore, depending on the severity of the injury, the individual may also require other treatments such as surgery or medications to help stop bleeding and prevent infection.

Which type of mutation is least likely to result in a frameshift mutation?

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When one nucleotide in the DNA sequence is swapped out for another, a substitution mutation happens. This could only change one amino acid in the protein because it wouldn't change your set of genes forward or backward.

What kind of mutation does not involve a frameshift?

Substitutions in which one nucleotide is swapped out for another are not considered frameshift mutations. When there is a substitution mutation, only one amino acid is changed in the polypeptide.

What kind of mutation will be most likely to frameshift?

Frameshift mutations occur when someone or more nucleotides are added or removed from the regular sequence of codons, supplied that its numbers of copies added or taken does not exceed the multiple of three.

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In gel electrophoresis, DNA fragments migrate toward the negative pole of the electric field. true or false

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In gel electrophoresis, DNA fragments migrate toward the negative pole of the electric field. Hence, the statement is True.

Gel electrophoresis is a scientific method for dividing molecules according to their charge and size. In this method, a gel matrix containing the desired material is subjected to an electric current. The size variety of the molecules to be separated determines whether the gel matrix should be constructed of polyacrylamide or agarose.DNA fragments are charged negatively in gel electrophoresis because of the negative phosphate groups in its backbone. As a result, when the gel is subjected to an electric current, the DNA fragments move in the direction of the positive electric field pole.

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Which is the most accurate and reliable means of taking body temperature?
A. oral
B. aural or tympanic
C. axillary
D. rectal

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The most precise and trustworthy method for measuring body temperature is rectal.

How can you take your oral temperature in the most precise way?

The most reliable indicator of the body's temperature is a person's rectal temperature. Temperature measurements in the mouth and axilla range from 1/2 to 1°F. Your tongue should be covered by the thermometer's tip. When the thermometer beeps to signify completion, keep your mouth shut around it for the prescribed amount of time. To read the number, remove the thermometer.

Which temperature is more reliable: the axilla or the mouth?

The most inaccurate temperatures are typically those collected from the armpit. As long as the mouth is closed while the thermometer is in place, oral readings are typically accurate for older children and adults.

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transmembrane proteins move ions or molecules across a membrane against their concentration gradient. (True/False)

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The transmembrane proteins move ions or molecules across a membrane against their concentration gradient. This statement is true.

The movement of ions or molecules against a concentration gradient from lower concentration to higher concentration across a cell membrane with the utilization of energy is known as active transport. Active transport needs cellular energy which is given by ATP hydrolysis. A transmembrane protein is a type of integral membrane protein that is present all over the surface of the cell membrane. Many transmembrane proteins function as gateway to permit the transport of specific substances while travelling across the cell membrane. These transmembrane proteins  frequently undergo significant conformational changes to move any substance through the transmembrane. They are highly hydrophobic in nature and it aggregates and precipitates in water. They require detergents or nonpolar solvents for extraction by using denaturing agents.

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Why is there less oxygen in the water near the ocean’s surface than in the water at lower depths?

A.
Oxygen is very heavy and sinks to the ocean floor.
B.
A lot of sea life consumes oxygen at the surface level.
C.
Most of the photosynthesizing organisms live on the ocean floor.
D.
Oxygen is absorbed at the surface level but cannot remain there.

Answers

Oxygen is absorbed in the surface level but cannot remain there, is the correct reason for less oxygen in the water near the ocean’s surface than in the water at lower depths.Therefore, the correct option is D.

What is the concentration of dissolved oxygen in seawater?

The concentration of dissolved oxygen in seawater can vary depending on various factors like temperature, salinity, pressure, and depth. The reason for lower oxygen levels at the ocean's surface is that oxygen is absorbed from the atmosphere into the water through diffusion, a process in which molecules move from areas of high concentration to areas of low concentration.

This means that the surface water, which is in contact with the atmosphere, can absorb oxygen from the air.Hence, there is less amount of oxygen on the surface than at the depth of the seawater. Therefore, the correct option is D.

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Prokaryotes are completely indispensable to which chemical cycle?A. CarbonB. PhosphorusC. WaterD. SulfurE. Nitrogen

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Prokaryotes are completely indispensable to nitrogen cycle

Prokaryotes have a variety of functions in the nitrogen cycle. Nitrogen-fixing bacteria turn atmospheric nitrogen gas into ammonia in the soil and in the root nodules of some plants. Ammonia is converted to nitrites or nitrates by nitrifying bacteria.

By turning atmospheric nitrogen into the plant-useable form of ammonia and fixing nitrogen from the atmosphere into different forms of nitrogen sources, prokaryotes play a significant part in the nitrogen cycle.

In prokaryotes, the use of external nitrogen sources and intracellular production of nitrogen-containing molecules are handled by a huge variety of enzymes that are expressed in nitrogen cycle.

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Many cell organelles, most notably the nucleus, are anchored by _____ which are assembled from a diverse class of proteins.

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Many cell organelles, including the nucleus, are anchored by cytoskeletal structures called microtubules, which are assembled from a diverse class of proteins known as tubulins.

Microtubules are a critical component of the cytoskeleton, which provides mechanical support to cells and plays a crucial role in processes such as cell division, intracellular transport, and cell signaling. Microtubules are composed of repeating subunits of α-tubulin and β-tubulin proteins, which assemble into long, hollow tubes. The microtubules provide a scaffold for other organelles to be transported around the cell or positioned in specific locations, such as the centrosomes which are responsible for organizing the cell's microtubule network. Microtubules also play a crucial role in mitosis, where they help to separate chromosomes into the daughter cells during cell division.

Overall, the cytoskeleton and its components, such as microtubules, play an essential role in maintaining the structural integrity of cells and providing a framework for cellular processes.

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The initial reward center discovered by Olds and Milner was located in the a. hippocampus. b. brainstem. c. hypothalamus. d. spinal cord.

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The initial reward center discovered by Olds and Milner was basically located in the 'hypothalamus'.

What exactly do you mean by hypothalamus?

The hypothalamus is a small region in the brain that serves as the control center for many vital functions, such as appetite, sleep, body temperature, and emotions. It is responsible for releasing hormones that regulate and coordinate these functions, as well as the autonomic nervous system. The hypothalamus is also involved in the regulation of stress levels and the body's response to it.

The reward center discovered by Olds and Milner is located in the hypothalamus, a small region of the brain located just below the thalamus. It is believed to be the primary region in the brain responsible for regulating emotions, appetite, and reward-seeking behavior. This region is believed to be the source of the rewarding sensation that Olds and Milner discovered when they stimulated it with electrical current.

Hence, option C is correct.

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exons are parts of genes that code for specific proteins. true or false ?

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exons are parts of genes that code for specific proteins is false the true  is Some exons are coding, in that they contain information for making a protein, whereas others are non-coding.

What are the 4 types of proteins?

The four levels of protein structure are primary, secondary, tertiary, and quaternary. It is helpful to understand the nature and function of each level of protein structure in order to fully understand how a protein works. By Tracy Kovach.

What are two types of protein?

Protein can be categorized into two types: complete and incomplete proteins. Proteins are made up of smaller units, called amino acids. Complete proteins contain all of the amino acids your body needs and include meat, fish, poultry, dairy, and soy products.

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What is the physical basis of the phototropic response?

Answers

The correct answer is cell elongation.The phototropic response is induced grow of the plant by the light stimulus. This process is called phototropism.

What causes cells to lengthen?

Because the majority of cell elongation occurs after cell division has halted, most effects on proliferation factors and cell expansion factors are spaced out in time.Auxin is one signal that regulates both cell elongation and proliferation.

What is the cell elongation phase?

These cells enlarge in the region for elongation as a result of the vacuole growing inside the cell.Cell enlargement and the formation of new cell walls take place in the cells that belong to the amplitude and phase.In this region, the cells change, developing larger vacuoles among other changes.

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50 points
Please help

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D. The model is limited by not accounting for natural errors during DNA replication.

True or False? the tissue of the capsule in a moss is diploid.

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The statement about the tissue of the capsule in moss being diploid is true.

Thus, the correct answer is true.

Funаriа is moss аnd it belongs to the dominion Bryophytа. Funаriа continues switching аmong the gаmetophytic depаrtment аnd sporophytic depаrtment phаse. The pill аnd setа belong to the sporophyte which undergoes meiosis to provide spores. In mosses, the dominаnt level is the hаploid generаtion (the gаmetophyte). This wаy thаt the green, leаfy gаmetophytic tissue is hаploid (hаs hаndiest one set of chromosomes). Eаch sporophyte plаnt consists of а pill, thаt's the middle of spore formаtion; а stаlk; аnd а foot thаt аttаches the sporophyte frаme to the end of the gаmetophyte. Eventuаlly, the diploid spores аre lаunched аnd, upon а hit germinаtion, develop into some other moss plаnt.

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Primary production in this coastal ecosystem is strongly influenced by nutrient supply from the adjacent shelf via surface water mass intrusions or upwelling of nutrient-rich deep waters. (T/F)

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The fertilizer supply from the nearby shelf via surface water mass intrusions or upwelling of nutrient-rich deep waters has a significant impact on primary production in this coastal ecosystem.

What is a straightforward explanation of ecosystem?

An environment is a place where so many types of living creatures interact to create a sphere of life, encompassing plants, wildlife, and some other species. Ecosystems are made up of both biotic (or alive) and abiotic (or nonliving) components.

Why is the ecosystem crucial?

Healthy ecosystems keep our soil in good condition, recycle nutrients, keep the air clean, manage our water supplies, control the climate, and give us food. They supply the necessary resources and raw materials for making medications and other goods. All civilisations are built on them, and they support our economies.

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using a calibrated microscope, when do you get better precision when determining the size of a specimen?

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At greater magnifications, we can more accurately measure the size of a specimen by using a calibrated microscope.

Using a calibrated microscope, you get better precision when determining the size of a specimen at higher magnification levels.

At higher magnification levels, the specimen appears larger in the field of view, and the microscope's calibration markings are closer together, resulting in smaller measurement errors.

Additionally, higher magnification levels often correspond to higher resolving power, allowing for greater accuracy in distinguishing the boundaries of the specimen being measured.

However, it's important to note that at higher magnification levels, there may be a trade-off between precision and accuracy, as minor irregularities in the specimen or the microscope's optics may become more significant at these levels.

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Organize the following layers of the epidermis from superficial to deep.
1.Stratum Corneum
2.Stratum Spinosum
3.Stratum Granulosum
4.Stratum Basale 5.Stratum Lucidum

Answers

The epidermis, basement, and hypodermis, which make up its three layers .The palms thicker skin contains stratum lucidum, which is composed of two to three cell layers.

How do stratums work?

A layer of cells or tissue any material layer, especially one comprising many parallel layers a level of ocean or atmosphere that is either arbitrarily or naturally defined, such as in mixed-use developments with residential apartments above and shopping areas below.

Describe a tissue?

There might be a lot of this in some tissue and not much in others. Even the organs are formed of tissues, as are all other body parts. Organs are made up of tissue groups. There are various tissue kinds.

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a biological membrane is a bilayer that contains lipids with

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Biological membranes are composed of amphipathic lipid molecules, with phospholipids being the most numerous.

The cell membrane (also known as the plasma membrane (PM), cytoplasmic membrane, or plasmalemma) is a biological membrane that separates and protects the interior of all cells from the outside world (the extracellular space).

The cell membrane is a lipid bilayer composed of two layers of phospholipids with cholesterols (a lipid component) interspersed between them, which maintains adequate membrane fluidity at different temperatures.

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A trait whose development requires the action of thousands of genes but whose variation is due to variation at only two loci is
A.) Extranuclear
B.) Digenic
C.) Polygenic
D.) Meristic

Answers

A trait whose development requires the action of thousands of genes but whose variation is due to variation at only two loci is Digenic trait.

What are Digenic traits?

Digenic traits are genetic traits that are controlled by two genes. Unlike many other traits, digenic traits are not solely determined by the interactions of the alleles of one gene. Digenic traits are often associated with diseases, and researchers have found that many diseases that were previously thought to be caused by mutations in a single gene are actually the result of mutations in two or more genes.

Digenic traits can be inherited in a variety of ways, including recessive inheritance, dominant inheritance, and additive inheritance. Research into digenic traits is important for understanding the genetic basis of disease and for developing treatments and cures for genetic disorders.

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What can an elevated PSA mean?

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An elevated PSA mean an enlarged or inflamed benign prostate gland.

As there are other causes of elevated PSA in addition to prostate cancer, an enlarged or inflamed benign prostate gland may be the cause. Benign prostatic hyperplasia, or the growth of the prostate that most men experience as they age, frequently causes high PSA readings.

The prostate produces a protein called PSA that is used to monitor the development of prostate cancer that has already been diagnosed. For the majority of patients, the PSA level is a very good indicator of recognised disease. Yet, there has long been debate concerning the usefulness of PSA as a tool for prostate cancer screening.

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if the length of the absolute refractory period in cardiac muscle cells was the same as it is for skeletal muscle cells ________.

Answers

If the length of the absolute refractory period in cardiac muscle cells was the same as it is for skeletal muscle cells, contractions would last as long as the refractory period.

What is skeletal example?

An example of skeletal muscles include any that are attached to your bones, or skeletal system. This allows you to move. Examples would be your biceps on the tops of your arms, triceps on the bottoms of your arms, calves on the back of your lower legs, and pectoral muscles in your chest.

What is skeletal in biology?

The skeletal system is the main framework that gives your body its shape. Bones and connective tissues including cartilages, tendons, and ligaments are the main components of the skeletal system.

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What is the term to describe a fish at the post larval stage?

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Beginning when the morphological transition from larva to juvenile, or when the larva acquires the characteristics of a usable fish, is known as the juvenile stage.

Fish eggs and larvae that cannot actively swim against currents are known as ichthyoplankton. Ichthyoplankton are remarkable because of how different they are from adults in appearance due to the difficulties of being so small and at sea.

As they grow into adults, fry go through numerous further developmental phases, which vary depending on the species. Throughout their first few months, young fish are typically referred to as fry (during their first few months to just less than one year in some species).

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In gel electrophoresis, DNA fragments migrate toward the negative pole of the electric field.
true/false? Explain.

Answers

The statement about the gel electrophoresis, DNА frаgments migrаte towаrd the negаtive pole of the electric field is true because since frаgments of double-strаnded DNА аre negаtively chаrged becаuse of the ionized phosphаte groups аlong the bаckbone, the molecules move towаrd the positive pole of the electric field.

Thus, the given statement is true.

What is gel electrophoresis?

Gel electrophoresis is а technique used to sepаrаte DNА frаgments аccording to their size. DNА sаmples аre loаded into wells (indentаtions) аt one end of а gel, аnd аn electric current is аpplied to pull them through the gel. DNА frаgments аre negаtively chаrged, so they move towаrds the positive electrode. Becаuse аll DNА frаgments hаve the sаme аmount of chаrge per mаss, smаll frаgments move through the gel fаster thаn lаrge ones.

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what process is the source of the co2 that root hairs release into the soil?

Answers

The process that is the source of the CO2 that root hairs release into the soil is cellular respiration.

What is cellular respiration?

Cellular respiration is the process by which cells convert glucose and oxygen into energy, carbon dioxide, and water. It is a critical process for the survival of most living organisms and occurs in both plants and animals.

Why do root hairs release CO2 into the soil?

Root hairs release CO2 into the soil as a byproduct of cellular respiration. The CO2 diffuses out of the root hairs and into the soil, where it can be taken up by nearby plant roots or microorganisms. This process helps to maintain a balance of gases in the soil and provides a source of carbon for soil organisms.

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Choose the list below that contains the substances required by typical nitrogen-fixing cyanobacteria.A. Oxygen, sulfur, light, water, and some mineralsB. Carbon dioxide, sulfur, light, water, and some mineralsC. Nitrogen, light, water, and some mineralsD. Carbon dioxide, ammonium, water, light, and some mineralsE. Carbon dioxide, nitrogen, water, light, and some minerals

Answers

The substances required by typical nitrogen-fixing cyanobacteria is: E.) Carbon dioxide, nitrogen, water, light, and some minerals.

What is cyanobacteria?

Cyanobacteria is also known as Cyanophyta. They are a phylum of gram-negative bacteria that obtain energy from photosynthesis. The name cyanobacteria refers to their color, which forms the basis of cyanobacteria's common name, blue-green algae, although they are not  scientifically classified as algae.

Exposure to some toxins like cyanobacterial toxins can harm your liver and kidneys. If you think you may have symptoms caused by harmful algae, cyanobacteria, or their toxins, then contact your healthcare provider or poison control center.

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Which two of the three types of muscles in the body are involuntary?

Answers

Answer: The two types of muscles in the body that are involuntary are smooth muscle and cardiac muscle.

Explanation:

Is ice cream good for your body? why?

Answers

Ice cream is definitely good for your body because it contains vitamin K that prevents blood clotting.

Why ice cream is better for you?

The consumption of ice cream at a normal level significantly benefits your health. This is because it is so refreshing, versatile, affordable, and a great way to get a serving or two of fruit. It's naturally lower in fat & sugar in comparison to store-bought vegan ice creams.

Experts suggest that the consumption of ice cream in a moderate and mindful way typically affects your health positively. In excess, these foods might displace nutritious choices in your diet and increase the risk of chronic conditions like heart disease, high cholesterol, obesity, and diabetes over time.

Therefore, ice cream is definitely good for your body because it contains vitamin K that prevents blood clotting.

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