PLEASE HELP ASAP!!

Describe what you first see when you open the body cavity of the frog. What organs are obvious? Which organs may require a more thorough inspection?

Answers

Answer 1

Answer:

urinary bladder, large intestine, stomach, small intestine, right lung


Related Questions

A gene coding for __________ proteins is likely to be found in a genomic island of a pathogenic bacterial strain and not found in a nonpathogenic strain.

Answers

Answer: CAN I GET THE ANSWER CHOICES AND I MAY THINK ITS PATHOGENIC

Explanation:

A gene coding for virulence factors proteins is likely to be found in a genomic island of a pathogenic bacterial strain and not found in a nonpathogenic strain.

Genomic islands are clusters of genes that are present in some strains of a bacterial species but not others. These islands often contain genes that confer an adaptive advantage to the bacteria, such as antibiotic resistance, metabolic capabilities, or pathogenicity. In the context of pathogenic bacterial strains, genomic islands frequently carry genes that encode for virulence factors proteins that enable the bacteria to cause disease in a host organism.

Virulence factors can include a variety of proteins, such as adhesins, which help bacteria attach to host cells; toxins, which can damage host tissues; and enzymes that may help the bacteria evade the host's immune response. The presence of these genes in a pathogenic strain and their absence in a nonpathogenic strain suggests that they play a role in the ability of the pathogenic strain to cause disease.

Therefore, when comparing pathogenic and nonpathogenic strains of bacteria, one would expect to find genes coding for virulence factors in the genomic islands of the pathogenic strain, as these proteins contribute to its ability to infect and harm a host.

Suppose you observed 240 progeny that resulted from a monohybrid cross and involved genes that obeyed Mendelian inheritance, how many heterozygous progeny would you expect to observe?

Answers

Answer:

120

Explanation:

If there is a monohybrid cross that involved genes that obeyed Mendelian inheritance this means that parental generation includes two true breed parents (both homozygous but with different genotype).

If we name the gene with A:

P: AA  x  aa

F1: Aa Aa Aa Aa

F2: AA Aa Aa aa

Half of them will be heterozygous, it means 120.

Carbon that gets into the soil through (animal death or defecation) can get buried and eventually (after a really long time) turn into what?

A. Algae

B. Water

C. Bacteria

D. Fossil Fuels

Answers

Answer:

D

Explanation:

Crude oils, shale,  and natural gas are some of the fossil fuels formed in this way. They are specially formed when vast amounts of algae die and sink to the bottom of the oceans over time and accumulate with sediments. They become buried under vast layers of sediments that apply high pressure. Over time, the high pressure and temperature turn the organic molecules into fossil fuels.

Help design a species

Answers

Answer:

just combine traits of ur two favortie animals and put it into a punnett square :)

Explanation:

Answer:

Basically explain about how would two different kind of species would react such as an mouse and a hedgehog. Would a offspring mouse/ hedgeho have quills on its back or would it have ever a tail.

Explanation:

What animal is called the ship of the desert

Answers

Answer: the camel

Explanation:

because of its adaptation to the desert

Camel is called the "Ship of Desert" because it is the only mean of transportation found in deserts which helps human being go from one place to another easily in the DESERT.IT has humps which help it to survive long dry periods without water.Its feet are thick which help it to move on the hot sand easily

Which of the following is the most common type of hydrolysis damage in the cell?A. deamination of thymidineB. breakage of the glycosidic linkage between the pyrimidines and the DNA backboneC. removal of cytosine from the DNA backbone to create an abasic siteD. deamination of cytosine to uracilE. None of the damage types given is known to occur in cells.

Answers

Answer:

D. deamination of cytosine to uracil

Explanation:

Hydrolytic DNA damage is usually a consequence of metabolic reactions and the most common example of this type of damage is hydrolysis of cytosine into uracil with the release of ammonia. This damage can be fixed by the cell's DNA repair system:removal of uracil  by an enzyme uracil-DNA glycosylase and consequently generation of an abasic (AP) site.  AP endonucleases recognise AP site and break a phosphodiester bond so that lesion can be replaced with another cytosine.

Final answer:

The depurination process, which removes guanine or adenine from deoxyribose in DNA, is the most common hydrolysis damage in cells, occurring more frequently than deamination of cytosine to uracil.

Explanation:

The most common type of hydrolysis damage in a cell is depurination, which is the spontaneous hydrolytic removal of guanine or adenine from deoxyribose C#1 in a DNA strand. This occurs at a rate of about 5000 instances per cell per day. This type of damage is more frequent than the deamination of cytosine to uracil, which occurs at an estimated 100 instances per cell per day. However, deamination of cytosine is one of the most consequential types of damage because if uncorrected, it can mutate the DNA sequence by changing a C-G pair to a T-A pair. Fortunately, cells have mechanisms to correct this form of damage through repair processes that remove the uracil and replace it with the correct cytosine.


Bacteria and fungi feed on a dead log.These organisms act as decomposers by breaking
down the matter in the log and returning
vital nutrients to the ecosystem.Which of
the following terms describes the role of the bacteria and fungi in the environment?
A.) producer
B.) habitat
C.) niche
D.)community

Answers

Answer:B habitat

Explanation:

An action potential does not re-stimulate the adjacent membrane that was previously depolarized because
A. stimulation is inhibited by the myelin sheath. B. it is impossible for an action potential to be propagated along an axon toward the nerve cell body. C. the resting membrane potential of the axon is too positive. D. the resting membrane potential of the axon is too negative. E. that area of the membrane is in the absolutely refractory period.

Answers

Answer:

E. that area of the membrane is in the absolutely refractory period.

Explanation:

Refractory period is a period during which neuron cell cannot be stimulated (depolarized). This is why the action potential can only travel in one direction from the neuron body towards axon.

Refractory period occurs because of the inactivation of voltage-gated sodium channels (while action potential is at its peak) which cannot be open for a certain period of time. and membrane cannot be depolarized.

Final answer:

An action potential does not re-stimulate the previously depolarized adjacent membrane because it is in the absolute refractory period, preventing the reopened of inactivated sodium channels and thus ensuring the unidirectional propagation of the action potential.

Explanation:

An action potential does not re-stimulate the adjacent membrane that was previously depolarized because that area of the membrane is in the absolute refractory period. During the absolute refractory period, the voltage-gated sodium (Na+) channels, which open during depolarization to allow Na+ ions into the cell thus initiating the action potential, are inactivated and cannot reopen until they return to their resting state. This ensures that the action potential only travels in one direction along the axon, towards the axon terminals.

The refractory period is critical in the sequential firing of action potentials and maintaining the unidirectional flow of nerve impulses. The sodium-potassium pump will eventually restore resting potential after this period, but until then, no new action potentials can be initiated in the refractory zone. Therefore, the correct answer to the student's question is E. that area of the membrane is in the absolute refractory period.

Despite the differences in mature plant cells, all of them are derived from meristem cells. The three major types of tissue systems develop from the meristem. Meristems develop cells in all but which tissue? A) notocord B) protoderm C) procambium D) ground meristem

Answers

Answer:

A) notocord

Explanation:

Answer:

Notochord

Explanation:

Meristem cells are a group of plant cells capable of division and growth that reside in zones where growth can occur. As undifferentiated cells, they are considered as stem cells in animals given that they are the origin of many of the cells that go on to rapidly differentiate/specialize and form various parts of plant. A collection of meristem cells performing a specific function is called meristem tissue.

Meristems are classified based on their location or position; apical meristem (at the tips), intercalary (in the middle) and lateral (at the sides). Apical meristem is further divided into:

- Protoderm (which differentiates into epidermis)

- Ground meristem ( differentiation gives rise to parenchyma, collenchyma and sclerenchyma)

- Procambium ( differentiation results in the production of vascular tissues of the plant; xylem and phloem)

Notochord is a cartilaginous skeletal rod supporting the body in all embryonic and some chordate animals. Notochords are only found in the phylum Chordata, a group of animals including humans. Hence, notochords is not a structural characteristics of plants and cannot be produced by the meristem cells in plants.

This is formed as a waste product in photosynthesis and used as a reactant in respiration.

Answers

Answer:

Oxygen

Explanation:

Photosynthesis is a process performed by the plants (also some algae and bacteria) in which the energy of sunlight is transformed into chemical energy usable by those plants. Necessary components of this set of reactions are sunlight, water and CO2, while resulting products are glucose and oxygen. Products of photosynthesis are then used in the metabolic processes known as cellular respiration. During the cellular respiration, glucose and oxygen are used for the production of ATP, CO2 and water. Cellular respiration is performed in all living organisms.

A virus cannot reproduce on its own. Viral DNA or RNA must enter the host cell and direct the cell to make the materials needed to produce more viral particles. There are two pathways a virus may take: the lytic or lysogenic pathway.
How are the lytic and lysogenic viral pathways ALIKE?
A) They both have a prolonged period of dormancy.
B) They both eventually cause the death of the host cell.
C) In both cases, viral DNA is replicated when the host cell undergoes fission.
D) In both cases, viral DNA is integrated into the host DNA for a period of time.

Answers

In both cases, viral DNA is integrated into the host DNA for a period of time

Answer:

B) They both eventually cause death of the host.

Explanation:

Viruses do not have their own energy producing system. Thus, viruses can only reproduce or replicate using host energy and reproduce by two methods. These are called the lytic cycle and the lysogenic cycle. In both the cycles, the viruses inject their genetic material into the host cell. In the lysogenic cycle, the viral DNA is integrated into the host DNA, while in the lytic cycle, the viral DNA exists as a separate free floating molecule within the host cell, and it reproduces separately from the host DNA. In both the cases the host cell die.

Which of the following statements correctly describes the effect a nonsense mutation would have on a gene?a) It changes an amino acid in the encoded protein.b) It alters the reading frame of the mRNA.c) It introduces a premature stop codon into the mRNA.d) It has no effect on the amino acid sequence of the encoded protein.

Answers

C. It introduces a premature stop codon

Atp and gtp are primary sources of energy for biochemical reactions. (a) describe the structure of the atp or the gtp molecule. (b) explain how chemiosmosis produces atp. (c) describe two specific cell processes that require atp and explain how atp is used in each process. (d) an energy pyramid for a marine ecosystem with four levels. bottom to top 1-4. label each trophic level of the pyramid and provide an example of a marine organism found at each level of this pyramid. explain why the energy available at the top layer of the p

Answers

a

Answer:

structure of ATP

The ATP molecule is composed of three components.

The center holds a sugar molecule known as ribose which is the same sugar that forms the basis of RNA.

One side of the sugar has an attachment of a string of phosphate groups which are key to the activity of ATP.

The other side has a base attached to it. This is a group consisting of linked rings of carbon and nitrogen atoms.

The base is adenine.

b

Answer:

During chemiosmosis, a concentration gradient of hydrogen ions is generated between the matrix of the mitochondria and the inter-membrane space.

This gradient is generated because hydrogen ions move from the matrix to the inter membrane space using the energy released by the electrons as they travel through the electron transport chain.

Hydrogen ions diffuse from the inter-membrane space of the mitochondrion to the matrix, through the ATP synthase in the inner mitochondrial membrane.

This diffusion happens due to the above mentioned concentration gradient of hydrogen ions formed between the matrix of the mitochondria and the inter-membrane space.

Kinetic energy released during the movement of hydrogen ions by diffusion is used to phosphorylate ADP, to produce ATP.

c

Answer:

Active Transport

There are four different types of proteins found in cell membranes that can transport molecules across the membrane known as P-class pumps.

In order for active transport to occur, you need ATP.

Such specific pumps include:

sodium-potassium pumpscalcium pumps.

Molecular ions will bind to the main site on the protein, and then an ATP will bind to a secondary site in order for movement into and out of the cell. If there is no ATP, then the molecular ions can not go where they are needed.

Anabolic Reactions

Anabolic reactions refer to reactions in which molecules, such as fats, lipids carbohydrates and proteins, are made.

In order to build new molecules, energy is needed to form molecular bonds.

When one of the phosphates on the triphosphate of the molecule gets cleaved off, energy that was needed to form the phosphate bond is released

Therefore, ATP turns into ADP or adenosine diphosphate.

Firefly luciferase is the enzyme that allows fireflies to illuminate their abdomens. because this light generation is an atp-requiring reaction, firefly luciferase can be used to test for the presence of atp. in this way, luciferase can test for the presence of life. the coupled reactions are

Answers

Answer:

Overall DeltaG = -6.40 kJ/mol

Delta G = 31.6 - 6.4 =25.2 KJ

T = 17 + 273.15 =290.15 K

Delta G = -RT * Ln (K)

25.2 * 10^3 J = -(8.314 J/moles*k)(290.15K) * Ln (K)

So (Delta G)/(-RT) = Ln (K)

Ln K = -10.44643114

Thus k = 2.905 *10^-5

Answer:

Luciferase is an enzyme that belongs to the oxidative enzyme set of some bioluminescence reactions. This phenomenon was discovered by Rafaël Dubois, who detected the emission of light in some living things was nothing more than an enzymatic oxidation, in which luciferase was the catalyst, and luciferin the substrate. This phenomenon was frequently detected in fireflies and in the Pholas dactylus mollusk, and later in Cnidarians (Renilla reniformis), marine copepods (Gaussia princeps), abyssal molluscs (Oplophorus gracilirostris), bacteria, etc.

Explanation:

The biological role of luciferase lies in its quality as a catalyst for some types of bioluminescence. Bioluminescence is a type of chemiluminescence, it consists of the oxidation of luciferin, a luminescent substance, catalyzed by luciferase. Said reaction begins with luciferin whose carboxylic group reacts with the phosphate group of ATP, forming luciferyl adenylate. This molecule is oxidized (a process catalyzed by luciferase), resulting in an intermediate peroxide (luciferase-luciferin-AMP-O2 complex) which, upon releasing a molecule of carbon dioxide, results in a ketoderivative, the oxyluciferin, which is excited, returning to its normal state by releasing a photon of light:

Luciferin + O2 → Peroxidic intermediary (luciferase-luciferin-AMP-O2 complex) → [oxyluciferin] → oxyluciferin → light

One difference between prokaryotes and eukaryotes is that

Answers

Prokaryotes: Single-called with no membrane-bound organelles nor nucleus (bacteria; they have nucleoid).

Eukaryotes: Multicellular with membrane-bound organelles and a nucleus (you and me; we have nucleus)

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~Destiny ^_^

WILL GIVE BRAINLIEST

greenhouse gases trap _____.

a. carbon dioxide
b. infrared radiation
c. uv radiation
d. visible spectrum radiation

the answer is not carbon dioxide in gradpoint

Answers

B, infrared radiation

The greenhouse gas is the type of gases which adsorbs infrared radiation in thermal range and causes global warming. So, the correct option is B.

What is Greenhouse gas?

A greenhouse gas is defined as a gas which absorbs and emits radiant energy within the thermal infrared range that causes the greenhouse effect. The primary greenhouse gases in Earth's atmosphere are water vapor, carbon dioxide, methane, nitrous oxide, and ozone.

During the day, the sun shines through the atmosphere, heating the Earth's surface while at night, the Earth's surface cools, releasing heat back into the air, where some of the heat is trapped by greenhouse gases in the atmosphere.

Thus, the greenhouse gas is the type of gases which adsorbs infrared radiation in thermal range and causes global warming. So, the correct option is B.

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Name the five nitrogenous bases, and put a checkmark in the correct column for each base. also indicate if the base is found in dna (d), rna (r), or both (b).

Answers

Final answer:

Adenine (A), guanine (G), cytosine (C) are found both in DNA and RNA. Thymine (T) is found only in DNA and uracil (U) is found only in RNA.

Explanation:

The five nitrogenous bases are adenine (A), guanine (G), cytosine (C), thymine (T), and uracil (U). Adenine and guanine are the purines, and they have a double-ring structure with a six-carbon ring fused to a five-carbon ring. Cytosine, thymine and uracil are the pyrimidines, which have only a six-carbon ring structure.

Adenine - DNA (D), RNA (R), Both (B) Guanine - DNA (D), RNA (R), Both (B) Cytosine - DNA (D), RNA (R), Both (B) Thymine - DNA (D), Not in RNA Uracil - RNA(R), Not in DNA

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The net result of a single glycolysis run is the formation of

Answers

Answer:

2 pyruvates, 2 ATP, 2 NADH

Explanation:

Glycolysis is the process  in which glucose is broken down to pyruvate in order to produce energy. It occurs in cytosol and it can be divided into two phases: phase that requires energy (two ATP molecules are used)  and phase that produces energy (four ATP molecules together with two NADH are produced).

After the glycolysis, which is the first step in cellular respiration, final products (two pyruvats) are further used. The next steps are: pyruvate oxidation, the citric acid cycle, and oxidative phosphorylation.

Dissolved oxygen (do) is critical to the ecology of an aquatic ecosystem. it can be affected by temperature, pollution, and numerous other factors. when the oxygen produced by photosynthetic plants in the water dissolves in the water, which of these is being formed?a)atomsb)a compoundc)an elementd)a solution

Answers

Answer

Dissolved oxygen behaves as a solution of O₂ in water. A solution is a mixture of a solute (the substance that is dissolved) and a solvent (the substance that dissolves the solute). In this case, the solute is the Oxygen and the solvent is the water. No atoms, compounds nor molecules are formed in this process, as there is no chemical reaction involved. 

Explanation:

Dissolved oxygen (do) is critical to the ecology of an aquatic ecosystem. The correct option to this question is b) a compound

What is dissolved Oxygen?

Dissolved oxygen (DO) refers to the level of free, noncompound oxygen (O2) dissolved in water or other liquids. The bonded oxygen in water (H2O) is in a compound and does not count toward dissolved oxygen levels. The amount of oxygen that is dissolved or carried in a given medium as a percentage of the maximum concentration that can be dissolved in that medium at the given temperature is known as oxygen saturation.

DO is an important parameter in assessing water quality because of its influence on the organisms living within a body of water. Oxygen enters water by diffusion from the surrounding air, by aeration, or as a byproduct of photosynthesis.

Thus,  when the oxygen produced by photosynthetic plants in the water dissolves in the water, a compound is formed.

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Kathy is a big fan of horror movies. Although she was initially too afraid to watch them alone, she soon found that she could not get enough of them. Kathy began to watch television shows that were more violent as well. Which of the following effects is most likely responsible for Kathy’s behavior? A. aggressor effect B. victim effect C. appetite effect D. hostile expectation bias

Answers

Agree with snzzyninja (C.) Appetite effect.

Answer:

appetite effect

Explanation:

Edge

Which of the following molecules are involved in pattern formation during development?

A) transcription factors
B) cAMP
C) cytoplasmic determinants
D) miRNAs

Answers

Answer:

C) cytoplasmic determinants

Explanation:

Cytoplasmic determinants are special molecules which play a very important role during oocyte maturation, in the female's ovary.

Answer:

The correct answer is - C)

Explanation:

Pattern formation is the development process by which cells are move to acquire different fates and identities depending on their positions inside the embryo. Cytoplasmic determinants are the molecules that help in determining in pattern formation during development.

These molecules decides and ensures the organs and tissues develop in the correct place and orientation.

Thus, the correct answer is C)

A pod of bottlenose dolphins is showing signs of stress in the Gulf of Mexico. Why would it be important for scientists to study the age structure of the pod?

Answers

Answer: Age structure would help scientists determine if the problem exists with young or old dolphins. A.

Explanation:

took the test

Kayla is learning about ecology and made a study chart.




Which headings best complete the chart?


X: Abiotic

Y: Biotic

X: Biotic

Y: Abiotic

X: Niche

Y: Habitat

X: Habitat

Y: Niche

HURRY PLEASE NO TIME TO WASTE!!!!!!

Answers

Answer:

x: Niche

y: habitat

Explanation:

x: because a niche is an action of an animal and one of the bullet points state " describes how a organism interacts with its enviorment "

y: because a habitat is a place that supports an organisms needs and the y section has the same statement.

X: Abiotic

Y: Biotic

X: Biotic

Y: Abiotic

X: Niche

Y: Habitat

X: Habitat

What are the conditions required to maintain allele frequency in a population?

Answers

Answer:

A large  population No change in allelic frequency due to evolutionary mechanisms (mutation, natural selection, gene flow, genetic drift)Random mating

Explanation:

According to Hardy-Weinberg Law, allele frequencies of the population will remain constant through the generation if a population is large, without evolutionary mechanisms acting on it (mutation, natural selection, gene flow, genetic drift), if mating is random. In other words, population is equilibrium (Hardy-Weinberg equilibrium).

Allele frequency describes how often an allele appears in a population. This measure is usually expressed in percentage. Allele frequency can describe the variation that exist within the population. It can be calculated as the number of alleles divided with the total number of gene copies in that population.

Change in allele frequencies over a certain short period of time is defined as microevolution. Mechanisms of evolution that can change allele frequencies through time are mutations, natural selection, genetic drift and gene flow (migrations).

Where does the energy for human metabolism come from

Answers

Answer:

From food

Explanation:

Food energy is a chemical energy used by humans through the process of cellular respiration. Food contain macromolecules such as lipids, proteins, carbohydrates, water, vitamins, and minerals that are necessary for the human metabolism and they are broken down and used by the series of metabolic steps (glycolysis, Krebs  cycle, electront transport chain and oxidative phosphorilation). Digested macromolecules should be used either as a source of energy or as building blocks for the cell.

At the end of catabolic processes within an organism food energy is transformed into energy usable by the cell-ATP.

Select all that apply.

Select the true statements about Eubacteria.

A.) Most live as decomposers and heterotrophs.
B.) Most only thrive in a narrow range of environments.
C.) Certain Eubacteria are responsible for food poisoning.
D.) Eubacteria thrive in extreme environments.

Answers

The true statements about Eubacteria are:

A.) Most live as decomposers and heterotrophs.

C.) Certain Eubacteria are responsible for food poisoning.

D.) Eubacteria thrive in extreme environments.

Hope this helps chu

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One of the known effects of acid rain is that it leaches calcium carbonate out of the soil. A study in a region that received significant amounts of acid rain showed that birds were laying eggs with highly porous shells. As a result, the bird population was declining. What is the MOST LIKELY cause of the observed quality of egg shells? A) Acid rain leaches out the calcium that is the most significant component of egg shells. B) The birds are unable to get calcium from the soil because the calcium has been leached out by the acid rain. C) The birds are unable to get calcium from the soil because the calcium has been consumed by the snails to secrete their shells. D) Calcium deficiency was caused because snails in the birds’ diets are unable to get enough calcium to secrete their shells.

Answers

Answer:

B) The birds are unable to get calcium from the soil because the calcium has been leached out by the acid rain

Explanation;

Calcium is needed by birds in large quantities for the development off the egg shell production and for healthy growth of newborn chicksCalcium cannot be stored in the skeleton of the birds since it would  make them too heavy and can easily be attacked by predators.Therefore the birds have to get calcium directly from  its source and eat it. Lack of calcium in the soil lead to lack of a source of calcium for the birds  thus their eggs might end up failing to  hatch due to the small holes on its shell and once there is air in the egg shell no hatching can take place  leading to decline in population.

Answer:

I agree, the answer is B

Explanation:

The majority of triglyceride digestion occurs in the small intestine facilitated by the enzyme __________ ________.

Answers

Answer:

The correct answer is PANCREATIC LIPASE.

Explanation:

The three types of food eaten by man are broken down into three different components during digestion. Carbohydrate is broken down to glucose, fat and oil is broken down to fatty acid and glycerol and proteins are broken down to amino acids. Most of these digested products are absorbed at the small intestines.

The presences of triglycerides at the small intestines usually stimulates the secretion of pancreatic lipase enzyme and bile. The bile break down the fat molecule and increase its surface area so that pancreatic lipase will be able to work on it effectively. Thus, triglyceride digestion at the small intestines is facilitated by the enzyme pancreatic lipase.

Final answer:

Triglyceride digestion primarily occurs in the small intestine facilitated by the enzyme pancreatic lipase which breaks them down into two free fatty acids and a monoglyceride. Bile salts also support this process by emulsifying the fats.

Explanation:

The majority of triglyceride digestion happens in the small intestine with the aid of the enzyme called pancreatic lipase. This enzyme is produced by the pancreas and released when food arrives in the small intestine. It then breaks down the triglycerides into two free fatty acids and a monoglyceride, which includes both short-chain (less than 10 to 12 carbons) and long-chain fatty acids. Additionally, the bile salts emulsify the fats which further facilitates this digestive process. The digestion of triglycerides is an important part of lipid metabolism.

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How does biodiversity support healthy ecosystems

Answers

ANSWER: Biological biodiversity refers to all the different kinds of life that are obtainable in a particular ecosystem, this include all the plants and animal populations that are found in a particular geographical area.

Biodiversity supports healthy ecosystem because it enhances the productivity and the survival of the ecosystem. For instance, in a situation where there are large number of different plant population in an ecosystem, such population will present variability in genetic make up. If a negative event occur in the ecosystem, it will be possible for some plants to survive. But, in a situation where it is only one type of plant that is obtainable in the ecosystem, it will be quite easy to wipe all of them out at once. For instance, a disease outbreak can easily destroy all the plants.

The fda requires that foods labeled "all natural" be produced without partially hydrogenated oils, added sugars, or gmos. the fda requires that foods labeled "all natural" be produced without partially hydrogenated oils, added sugars, or gmos.


a. True


b. False

Answers

The answer would be a.True

Final answer:

The claim that the FDA requires 'all natural' foods to be produced without partially hydrogenated oils, added sugars, or GMOs is false. The FDA does not have a formal definition for 'all natural.' They do, however, have guidelines for organic labeling and have taken steps to regulate trans fats.

Explanation:

The statement that the FDA requires that foods labeled "all natural" be produced without partially hydrogenated oils, added sugars, or GMOs is false. The FDA has not developed a definition for the term "all natural" or similar terms. However, the FDA has taken steps to eliminate trans fats from the food supply by requiring the removal of partially hydrogenated oils by 2021. They have also required that trans fat content be listed on the Nutrition Facts panel of food labels since 2006. While the FDA has guidelines for organic labeling, which includes the prohibition of GMOs, synthetic fertilizers, and certain pesticides, these are not the same as an "all natural" label.

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