Please help I can’t figure this out
Select all of the things that are true about photosynthesis and respiration
(Check all that apply)
1. Aerobic respiration in an efficient way to covert glucose into ATP
2. Only plants are able to use photosynthesis
3. Chlorophyll is why we see so many different colors
4. Plants do not use mitochondria because they do not need to use respiration
5. Water and carbon dioxide are reactants in photosynthesis
6. Cells can still “burn” glucose to realize energy without oxygen
7. Carbon dioxide comes out of photosynthesis
8. Respiration happens in mitochondria
9. Photosynthesis held plants make sugar

Answers

Answer 1

Answer:

Photosynthesis is the process in which cells use carbon dioxide and water to make glucose in the presence of sunlight.

Respiration is the process in which glucose molecules are utilized to release energy in the form of ATP.

Explanation:

Ans1- Respiration in cells occurs in mitochondria.  Cells gain energy in the form of ATP. Conversion of glucose in the form of ATP is known as cellular respiration.

Cellular respiration can take place either in presence of oxygen(aerobic respiration) or in absence of oxygen(anaerobic respiration ).

Before entering into cellular respiration glucose molecule has to be converted into pyruvic acid. This process in known as GLYCOLYSIS.

Anaerobic respiration occurs in mitochondria when oxygen is not present. It is known as fermentation.It is not effective process to produce ATP from glucose as in this process only 4 ATP can be released.  

Aerobic respiration occurs in mitochondria in presence of oxygen.  This is effective pathway to gain ATP as it releases 36 ATP from 1 glucose molecule.

Ans2- All cells which has photosynthetic pigments are able to use photosynthesis. Example- Blue green algae, cynobacteria etc.

Ans3- We can see different shades of green colors of plants and leaves because of different types of chlorophyll present in plant. Chlorophyll are of 6 types in plant. Their types are based on the lights they absorb. Two main types of chlorophylls are chl a and chl b.

Ans4- Both plant and animal cells have mitochondria. In plant also they need energy. To get ATP from breakdown of glucose respiration is occur in plant also.

Ans5-In photosynthesis glucose is formed from water and carbon di oxide. 6 carbon dioxide and 6 molecules of water are used to make 1 molecule of glucose. Water and carbon di oxide are reactant in this process.

Ans6 -  Cells without oxygen can burn glucose to release energy. This process is known as Anerobic respiration/ fermentation. But the outcome of energy is lower than aerobic respiration. ( ANS1)

Ans7- In the process of photosynthesis reactants are water and carbon di oxide. Oxygen produced released in the form of gas along  with carbon di oxide.

Ans8- The enzymatic reaction of respiration occurs in mitochondria. Krebs cycle occurs in the matrix of mitochondria.( ETC electron transport chain) to release ATP occurs in cristae of inner membrane of  mitochondria.

Ans9- Plants make glucose through photosynthesis . In  presence of sunlight plants use carbon dioxide and water to make sugar.


Related Questions

The human immune system can produce a specific response or a nonspecific response
to infection. Which of the Following is a specific immune response of the human
immune system?​

Answers

Answer:

Human immune system has two types of immune response-; Specific immune response and non specific immune response.

Explanation:

                                Human immune response

The response of  body caused by immunity to a particular antigen or pathogen.   there are two types of immune responses-

INNATE IMMUNE RESPONSE- This is the non specific immune response. This is present in all organisms by birth. No specificity is required.Examples-

Immunity transferred by mother to her baby from colostrum,

First line of defence like skin,

Non specific immune response is always present naturally. This is always ready to fight with any infection. Neutrophils, basophils, eosinophils and macrophages are cells which give immune response without any specific training. The first response after infection is fever, inflammation etc caused by non specific response.

ACQUIRED IMMUNE RESPONSE- Also known as adaptive response or specific response. Which is acquired by individual in his life. It is triggered by antigen and as response body produce specific cells

In this immunity, body produce MEMORY CELLS, so whenever in future that particular antigen exposed to the body it gives quick response against that antigen.

There are B and T LYMPHOCYTES which perform this response. B lymphocytes are cells produce antibodies  these are IgA, IgD,IgE,IgG, and IgM. These cells target antigens and kill them in very specific manner.

WHAT ARE THE LEVELS IN ORGANIZATION IN PARAMECIUM?

Answers

Final answer:

Paramecium is organized at the cellular level, with specialized organelles like the nucleus and cilia, but as a single-celled organism it does not have tissues, organs, or higher levels of organization.

Explanation:

The levels of organization in a Paramecium, like other living organisms, can be described in a hierarchy from simplest to most complex. Starting with organelles, which are the basic functional units within cells, we move onto the cellular level, where all organelles function as a whole unit. While multicellular organisms continue to higher levels of organization such as tissues, organs, organ systems, organisms, populations, communities, ecosystems, and ultimately the biosphere, Paramecium as a single-celled organism does not have these higher levels of organization.

A Paramecium's complexity is primarily within the single cell level, where organelles like the nucleus, contractile vacuoles, and cilia are organized to carry out the life processes of this unicellular organism. Therefore, the Paramecium exemplifies the biological organization at the cellular level with highly specialized organelles contributing to its survival in its aquatic ecosystem.

who were the contributing scientists that discovered how muscle contraction worked​

Answers

Andrew Huxley and Niedergerke are the scientists that discovered the sliding filament theory.  

Explanation:

They said that the muscle filaments are made up of proteins like actin and myosin. Actin is the thinner protein that is formed of two subunits – G actin and the F actin. They together form the actin filament.

Myosin filament is formed of the units Heavy meromyosin and light meromyosin. These together make the myosin filament. These filaments slide over each other and attach themselves to make the muscle contract.  

Using the product rule of probability, calculate the odds of getting an individual that receives the bb genotype and therefore shows the recessive trait, white flowers. A) 1/4 X 1/4 = 1/16 B) 1/2 X 1/2 = 1/4 C) 1/4 + 1/4 = 1/2 D) 3 X 1/4 = 3/4; 1 - 3/4 = 1/4

Answers

The recessive trait, white flowers are shown as 1/2* 1/2= 1/4. So, the correct option is B.

What is Probability?

Probability means possibility which is a branch of mathematics that deals with the occurrence of a random event. The value is expressed from zero to one. Probability has been introduced in Mathematics to predict how likely events are to happen.

A probability rule that is very useful in genetics is the product rule, which states that the probability of two or more independent events occurring simultaneously can be calculated by multiplying the individual probabilities of the events. Like in above given information, Probability of recessive trait is 1/4.

Thus. the recessive trait, white flowers are shown as 1/2* 1/2= 1/4. So, the correct option is B.

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Which property of water remains unchanged when it recycles in the atmosphere

Answers

Answer:

Molecular arrangement is the property of water remains unchanged when it recycles in the atmosphere .

Explanation:

In the water, Molecular arrangement remains same when it recycles in the atmosphere . A water molecule consists of two hydrogen atoms bonded to an oxygen atom, and its overall structure is bent.

This is because the oxygen atom, in addition to forming bonds with the hydrogen atoms, also carries two pairs of unshared electrons. All of the electron pairs—shared and unshared—repel each other.  Thus it is the element or property which remains in same condition.

The chemical composition of water, specifically the molecular structure of H₂O, remains unchanged during the water cycle as it moves through the atmosphere, despite undergoing phase changes.

The property of water that remains unchanged when it recycles in the atmosphere is its chemical composition. Each water molecule, consisting of two hydrogen atoms and one oxygen atom (H₂O), maintains this structure throughout the water cycle, regardless of the physical state it may be in (solid, liquid, or gas). Despite continuous phase changes such as evaporation, condensation, and precipitation, the intrinsic molecular structure of water does not alter. Water's unique properties, including its high specific heat and density anomaly where solid water (ice) is less dense than liquid water, play crucial roles in weather systems and the environment without changing the actual H₂O molecule.

As water evaporates, forms clouds, and returns as precipitation, it moves energy through the atmosphere, driving weather patterns. The vast amount of energy required for the temperature of water to change protects our climate by absorbing and releasing heat at a slower rate. This characteristic also significantly impacts Earth's weather, as it allows water to store heat, influencing weather events like hurricanes. Despite these changes in state and temperature, the chemical composition of water remains consistent during the hydrologic cycle.

By the end of prophase, each of the following has occurred except ____.
Question 7 options:

tighter coiling of the chromosomes

breaking down of the nuclear envelope

disappearing of the nucleolus

lining up of chromosomes in the cell

Answers

By the end of prophase in Mitosis, each of the following has occurred except lining up of the chromosomes in the cell.

Explanation:

Prophase is divided into 2 phases early and late prophase.

Early prophase: The nuclear membrane starts dissociating, centrioles starts to migrate to the opposite poles, chromatin fibres (4) becomes thicker and condensed,

Late Prophase: From the centrioles that are at the opposite poles, Spindle fibres and 2 astral rays are formed. The spindle fibres get attached to the chromosomes.

The prophase will be followed by the metaphase, the chromosomes formed will be adjusted at the equatorial plate.

The description 'lining up of chromosomes in the cell' does NOT occur by the end of prophase.

Mitosis is a cell division by which one cell is divided to generate two genetically identical daughter cells.

This type of cell division has four main stages: prophase, metaphase, anaphase and telophase.

During prophase, the chromatin condenses, the nuclear envelope disintegrates, the nucleolus disappears and centrioles move to opposite ends of the cell (animal cells).

During metaphase, the chromosomes align at the equator plate of the cell in order to travel to opposite poles in anaphase.

In conclusion, the description 'lining up of chromosomes in the cell' does NOT occur by the end of prophase.

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In a twisted ladder model of a DNA molecule, the rails represent the
and the rungs represent the of the nucleotides.
OA) sugars and phosphates; nitrogen bases
OB) nitrogen bases; sugars and phosphates
OC) adenine and thymine; guanine and cytosine
OD) guanine and cytosine; adenine and thymine
THE​

Answers

OA) sugars and phosphates; nitrogen bases
Final answer:

The rails in the twisted ladder model of DNA represent the sugar-phosphate backbones and the rungs represent the pairs of nitrogen bases. The correct answer to the student's question is OA) sugars and phosphates; nitrogen bases.

Explanation:

In the classic double helix model of DNA, the "rails" of the twisted ladder are made up of the sugar-phosphate backbone, while the "rungs" correspond to the pairs of nitrogenous bases. Each nucleotide, which is the basic building unit of DNA, consists of a phosphate group, a sugar (deoxyribose), and a nitrogenous base. The backbone structure is formed by the sugar of one nucleotide connecting to the phosphate group of the next, creating a long chain that makes up the sides of the ladder. The nucleotides from one strand connect to those of a complementary strand via hydrogen bonds between their nitrogenous bases, which form the rungs of the ladder with adenine (A) always pairing with thymine (T), and guanine (G) always pairing with cytosine (C).

Therefore, the correct answer to the question is: OA) sugars and phosphates; nitrogen bases. The sugars and phosphates form the structure of the double helix, and the nitrogen bases interact in the middle, creating base pairs that hold the two strands together like the steps of a ladder.

What must happen to DNA before cells can divide?

Answers

Before a cell divides, DNA must copy itself in order to check for errors and make sure that the cells produced will have the correct number of chromosomes

Some rivers no longer reach the ocean because
A) mud and sand from floods have blocked their channels
B) too much water is taken out of the watershed upstream
C) they are now polluted and people have redirected them
D) there is too much erosion and reshaping in the watershed

Answers

Pretty sure the correct answer is D

Can the scientific method be used to prove unique historical events?
o Yes
NO

Answers

Answer:

Yes

Explanation:

if you use the scientific method in that way then yes you can

Answer:

Yes, is the correct answer!

Explanation:

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what is the solution set of the quadratic equation x^4-x^2-2=0​

Answers

Answer:

(x^4-x^2-2)^0=0

0=0

simple

I don’t think this question belongs to biology section nut if understood you well

2-2=0

x^2-2=x^0

x^0=1

Then x^4-x^0=x^4-1=x^3

So x^4-x^2-2=x^3

Now the equation is x^3=0

The same is x^3=0^3

so x=0

Which set of words below could be used to describe the dispersal of seeds to a new region?

- wings, legs, migration
- nvasive, extic, continental drift
- biogeography, adaptation, survival
- wind, water, animal feces

Answers

Answer:

wind, water, animal feces

Technology can have good and bad effects.what is a bad effect of spraying pesticides on crops

Answers

Answer:

Although pesticides can help a farmer to get rid of insects that are harming his plants, but pesticides can be heavily toxic.

Some of the dangers of using pesticides are:

The pesticides can make their way into a river, lake or pond source. They can be toxic for the aquatic life there. In this way, they can make an ecosystem unstable.

Leeching can occur when pesticides make their way to groundwater. The groundwater is used by many people for drinking purposes. Hence, this water will become toxic for the usage of humans.

in cystic fibrosis, a change in a single gene causes the protein called CFTR to?
a. become less soluble
b. fold improperly
c. destroy the cell membrane
d. transport sodium ions

Answers

C bc it make more since
a. become less soluble


The CFTR gene provides instructions for making a protein called the cystic fibrosis transmembrane conductance regulator. This protein functions as a channel across the membrane of cells that produce mucus, sweat, saliva, tears, and digestive enzymes. The channel transports negatively charged particles called chloride ions into and out of cells. The transport of chloride ions helps control the movement of water in tissues, which is necessary for the production of thin, freely flowing mucus. Mucus is a slippery substance that lubricates and protects the lining of the airways, digestive system, reproductive system, and other organs and tissues. More than 1,000 mutations in the CFTR gene have been identified in people with cystic fibrosis. Most of these mutations change single protein building blocks (amino acids) in the CFTR protein or delete a small amount of DNA from the CFTR gene. The most common mutation, called delta F508, is a deletion of one amino acid at position 508 in the CFTR protein. The resulting abnormal channel breaks down shortly after it is made, so it never reaches the cell membrane to transport chloride ions. All of these changes prevent the channel from functioning properly, which impairs the transport of chloride ions and the movement of water into and out of cells. As a result, cells that line the passageways of the lungs, pancreas, and other organs produce mucus that is abnormally thick and sticky. The abnormal mucus obstructs the airways and glands, leading to the characteristic signs and symptoms of cystic fibrosis.

What features allowed herbivores and carnivores to consume their specific diets

Answers

Answer:

The digestive systems of carnivores and herbivores are very different. Carnivores typically have only one stomach chamber and a simple digestive system. ... Herbivores have large, flat teeth that grind up plant materials. In contrast, carnivores have mostly sharp, pointed teeth that are used for tearing flesh

Explanation:

What are some important uses of DNA in forensics

Answers

Answer:

DNA profiling is a forensic technique in criminal investigations, comparing criminal suspects' profiles to DNA evidence so as to assess the likelihood of their involvement in the crime. ... DNA profiling has also been used in the study of animal and plant populations in the fields of zoology, botany, and agriculture.

Explanation:

It is also known as genetic fingerprinting, DNA typing, and DNA profiling. When used for forensic science, DNA fingerprinting makes use of probes that target regions of DNA specific to humans, thus eliminating any possibility of contamination by extraneous DNA from bacteria, plants, insects, or other sources.

DNA has been notably important to the field of forensic science. The discovery of DNA has meant that the guilt or innocence of a person who is investigated for a crime can be determined. It also means that scarce evidence can still yield vital clues regarding the perpetrator of a crime.

Hope this helps

Final answer:

DNA analysis is crucial in forensic science for identifying individuals and providing evidence in legal cases. Crime scene investigations often involve DNA profiling to match suspects to biological material at a crime scene. Forensic scientists utilize technologies like PCR, STR analysis, and mitochondrial DNA sequencing to analyze samples.

Explanation:

Important Uses of DNA in Forensics

DNA analysis plays a crucial role in forensic science, providing a powerful tool for solving crimes and seeking justice. The unique nature of an individual's DNA allows forensic experts to use it as definitive evidence in court cases. DNA profiling can determine if a suspect's genetic material matches that found at a crime scene, which is vital for crime scene investigations. Examples include analysis of blood, skin cells, hair, or other biological materials that could link a crime to an individual. In addition to human identification, DNA analysis also aids in other legal matters like paternity testing, identifying bodies, or even tracking the source of infections, as seen in bioterrorism with the anthrax cases handled through microbial genomics.

Technicians use DNA sequencing to compare sample sequences with known sequences, which can determine relationships or identify crime suspects. They employ various technologies, including polymerase chain reaction (PCR) and short tandem repeat (STR) analysis, for amplifying and comparing DNA fragments, and mitochondrial DNA sequencing, which is often used in cases where nuclear DNA is not available.

Those pursuing careers in forensics should obtain a solid foundation in the sciences, with specializations in areas like biology or chemistry, and have laboratory experience. Their expertise is also vital in court, where they present and interpret DNA evidence.

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In rna the nucleotide is used in place of thymine in dna

Answers

Answer:

In RNA, thymine is replaced with Uracil.

Explanation:

Genetic material (DNA and RNA) is made up of nucleotides. These are Adenine, Thymine, Guanine, Cytosine, and Uracil. Three of them (Adenine, Cytosine, and Guanine) are present in both types of genetic material, i.e. DNA and RNA. However, in DNA Thymine is present whereas in RNA, Uracil replaces Thymine. They are similar in structure except that Thymine has additional methyl group.

Scientists talk about the 6th Mass extinction happening right now. What is it and how is it different from the last 5?

Answers

Answer:

The 6th Mass Extinction is the current mass extinction event of the Holocene era.

The 6th extinction differs with the last five in terms of the cause. The last 5 extinction events all had natural causes, with species killed either by climate change or by natural disasters such as volcanic eruptions.

Explanation:

Before we elaborate the 6th extinction, it is important to understand the meaning of mass extinction and why it takes place.

Mass Extinction:

A mass extinction is a time period in which a large number of living species go extinct.

The Earth has gone through 5 major extinction events. Lets analyse how their cause differs from the 6th extinction.

The first extinction occurred in the The Ordovician Period of the Paleozoic Era (about 440 million years ago). The major cause of this event was continental drift and the climate change that followed. This extinction took place in 2 stages: an ice age that covered the Earth and the rising sea levels when the ice age ended. The second one occurred in The Devonian Period of the Paleozoic Era (about 375 million years ago). Many climatic changes are suspected to be causes of this event: Lack of oxygen in the oceans, quick cooling of air temperatures, volcanic eruptions, and meteor strikes.The third event took place in The Permian Period of the Paleozoic Era (about 250 million years ago). Asteroid strikes, volcanic activity and climate change are suspected to be the causes.The fourth extinction occurred at the end of the Triassic Period of the Mesozoic Era (about 200 million years ago). Volcanic activity, rising pH and salt concentrations in the oceans and climate change are said to be the primary causes.The fifth extinction occurred at the end of the Cretaceous Period of the Mesozoic Era (about 65 million years ago). Asteroid strikes or meteor showers are said to be the causes.The 6th extinction, occurring in the Holocene era, is believed to caused solely by human activities and the consequent climate change.

Active transport occurs through which type of biomolecule?

Answers


Active transport usually happens across the cell membrane. There are thousands of proteins embedded in the cell's lipid bilayer. Those proteins do much of the work in active transport. They are positioned to cross the membrane so one part is on the inside of the cell and one part is on the outside.

What can happen if a pesticide is used on an insect population but only kills 98% of insects

Answers

Answer:

It can make the resistant insect live and to produce more insects through reproduction.  This will happen if a pesticide is used on an insect population but only kills 98% of insects

Explanation:

Pesticides are chemicals used to kill the population of insects attacking the crops plants and household things. 98% of insects are killed by pesticides because they do not have the gene of resistance which disables them to survive. Some of the insects have resistant genes which helps them in surviving and reproducing more insects.

The number of these insects’ increases through reproduction. Some will be pesticides of "contact" that kill when the organism falls into direct interaction.  Some are "systemic" and it will be embedded into the molecular structure of a plant. Once they bite the crop, they destroy them and consume the chemical pesticide.

A pea plant with round seeds (RR) is crossbred with another pea plant with wrinkled seeds (rr). What is the probability of the offspring having wrinkled seeds?

Answers

Answer:

0

Explanation:

The parent plants are each heterozygous for round seeds and heterozygous for wrinkled seeds. Each parent contributes one allele to the offspring plant. As such, the only possible genotype of all offspring plants would be Rr (which would have round seeds as round seeds allele is dominant). Hence, no offspring can have wrinkled seeds.

Answer: 0%

Explanation: The parent plants are each heterozygous for round seeds and heterozygous for wrinkled seeds. Each parent contributes one allele to the offspring plant.

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In the Earth's mantle, heat is transferred in large convection currents. Within these currents,
A.
hotter and cooler rock sink but do not rise.
B.
cooler rock rises and hotter rock sinks.
C.
cooler and hotter rock rise but do not sink.
D.
hotter rock rises and cooler rock sinks.

Answers

Answer:

D. hotter rock rises and cooler rock sinks.

Explanation:

We know that as we move towards Earth's center, the temperature rises. This rise in temperature causes rocks to melt (magma). The high temperature and melting of rocks decrease the density of material which makes it move upward. By moving upward, the molten rock starts turning solid and becomes denser again. Here, it sinks back due to gravity. This upward and downward movement of rocks due to density and temperature makes a convection cell.

PS: The formation of convection cells in Earth's interior is also the reason for plate tectonics.

The answer is D hotter rock rises

Why? Because... While convection is generally discussed as a form of heat flow within liquids and gases, it can occur in solids too. For example, the temperature and pressure conditions in the Earth's mantle allow mantle rock to flow very slowly. Hotter rock gradually rises up and cooler rock gradually sinks down in large convection currents in the mantle.

And because study island....

Diffusion occurs because

a. molecules constantly move and collide with each other.

b. The concentration of a solution is never the same throughout a solution.

c. The concentration of a solution is always the same throughout a solution.

d. Molecules never move or collide with each other.

Answers

I believe the correct answer should be A! c:

Diffusion occurs because the molecules constantly move and collide with each other. Hence, the correct option is A.

What is diffusion?

Diffusion refers to the motion of molecules from a region of high concentration to the region of low concentration. By doing so, the molecules of the substance will try to attain equilibrium. Hence, they will try to equalize their concentration on both the sides of the membrane.

Diffusion occurs in all the living beings, which facilitates the movement of substances or molecules in and out of the cell under a concentration gradient.

It is mainly of 2 types: Simple diffusion where it occurs simply without the help of any facilitators, while facilitated diffusion where the diffusion occurs with the help of solute-specific facilitators or carrier proteins.

The substances which are in the liquid and gaseous phases readily undergo diffusion due to the presence of intermolecular spaces between them.

Thus, the correct option is A. The molecules constantly move and collide with each other and cause diffusion.

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what part of your school fils up the inside of the cell

Answers

Answer:

1) vacuole= ur school canteen (if u hve one)

2) chloroplast = ur science teachers

3) lysosomes= ur MATH TEACHER!!!!!!!!! lol

4)NUCLEUS=UR PRINCIPAL'S OFFICE

5)Golgi body = ur school bus

6) cell wall= guards at ur school

Which of the following is a true statement about the flow of energy in an ecosystem?
a. Smaller organisms need less energy per gram of body weight than do larger organisms.
6. Energy transfer between organisms normally involves conservation of heat energy.
C. Energy is lost between trophic levels.

Answers

Energy is lost between trophic levels.

Answer:  Option C

Explanation:

The source of energy for all organisms is the Sun. The Tropic levels exhibit the flow of energy in an ecosystem. The flow of energy is always in one direction. The energy level decreases crossing each trophic level as energy is lost in the form of heat.

Primary producers are the first in Trophic level, The Herbivores fall in the next level , the Carnivores form the next level and the decomposers are the last in the trophic level. The decomposers decompose all the living organisms and convert to nutrients that are available in the soil. The plants take up this nutrient and hence this is a cycle.

What could be a good effect of a mutation?
O
A. More variety in a population.
O
B. Less variety in a population.
O
C. DNA is destroyed
O
D. DNA does not function properly.

Answers

i would say A but i’m not completely sure

The good effect of a mutation is A. More variety in a population.

What is mutation?

A mutation is a change inside the DNA sequence of an organism. Mutations can result from errors in DNA replication in the course of cell department, publicity to mutagens. The mutation is the permanent alteration of the nucleotide series of the genome of an organism, virus, extrachromosomal DNA, or different genetic factors. Mutations in the structure of genes may be categorized as Small-scale Mutationsand big Scale Mutations.Maximum mutations aren't dangerous, but some may be. A dangerous mutation can bring about a genetic disease or maybe cancer. any other form of mutation is a chromosomal mutation. Chromosomes, placed within the cellular nucleus, are tiny threadlike structures that convey genes.

Hence, the good effect of a mutation is A. More variety in a population.

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Comparison of Photosynthesis and Cellular Respiration

Answers

Explanation:

Photosynthesis produces glucose and O2 from inorganic CO2, light energy and water.

6CO2 + 6H20 + (energy) → C6H12O6 + 6O2

These end products, namely O2 and glucose are then used in respiration...

C6H12O6 (glucose) + 6 O2 → 6 CO2 + 6 H2O + ≈38 ATP

The CO2 and H2O produced as waste in respiration can then be incorporated at the beginning of photosynthesis. Thus the reactions are cyclic- they feed into each other.

Further Explanation:

Photosynthesis is a chemical pathway that’s integral to producing energy in plants and other primary producers. Energy in the form of molecules of glucose is produced from light, water and carbon dioxide while oxygen is released. This occurs in several complex steps, photosynthesis is a rate limited reaction, depends on several factors including carbon dioxide concentration, ambient temperature and light intensity; the energy is retrieved from photons, I.e. particles of light, and water is used as a reducing agent. This occurs in the thykaloids, where pigment molecules like chlorophyll reside.

Occuring in several complex steps, photosynthesis is a rate limited reaction, depends on several factors including carbon dioxide concentration, ambient temperature and light intensity; the energy is retrieved from photons, I.e. particles of light, and water is used as a reducing agent. Water supplies the chlorophyll in plant cell with replacement electrons for the ones removed from photosystem II.

Additionally,

water (H2O) split by light during photolysis into H+ and OH- acts as a source of oxygen along with functioning as a reducing agent; it reduces the molecule NADP to NADPH by providing H+ ions and produces molecules of the energy storage molecule ATP through an electron transport chain. This occurs in the thykaloids, where pigment molecules like chlorophyll reside. Later, in dark reactions, NADP and NADPH are used in the Calvin cycle where monosaccharides or sugars like glucose are produced after the modification of several molecules. These store energy in their bonds, which can be released in respiration in the mitochondria.

In all eukaryotic cells mitochondria are small cellular organelles bound by membranes, these make most of the chemical energy required for powering the biochemical reactions within the cell. This chemical energy is stored within the molecule ATP which is produced.

Respiration in the mitochondria utilizes oxygen for the production of ATP in the Krebs’s cycle via the oxidization of pyruvate( through the process of glycoysis). The electron transport chain, in which oxygen functions as the terminal electron acceptor occurs in both plants and animals.

Glycolysis: occurs in the cytoplasm 2 molecules of ATP are used to cleave glucose into 2 pyruvates, 4 ATP and 2 electron carrying NADH molecules. The Kreb's cycle: in the mitochondrial matrix- 6 molecules of CO2 are produced by combining oxygen and the carbon within pyruvate, 2 ATP oxygen molecules, 8 NADH and 2 FADH2. The electron transport chain, ETC: in the inner mitochondrial membrane, 34 ATP, electrons combine with H+ split from 10 NADH, 4 FADH2, renewing the number of electron acceptors and 3 oxygen; this forms 6 H2O, 10 NAD+, 4 FAD.

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Final answer:

Photosynthesis and cellular respiration are interconnected processes that plants and organisms rely on to convert energy and maintain life. They involve the exchange of gases, the use of energy, and the production of different molecules. By recycling oxygen and converting solar energy into usable forms, these processes sustain life on Earth.

Explanation:

Photosynthesis and cellular respiration are two interconnected processes in living organisms. Photosynthesis is the process by which plants and some microorganisms convert sunlight, carbon dioxide, and water into glucose and oxygen. Cellular respiration is the process by which cells break down glucose and oxygen to produce energy, carbon dioxide, and water. Both processes involve the exchange of gases, the use of energy, and the production of different molecules.

In photosynthesis, carbon dioxide is taken in, and oxygen and glucose are produced. In cellular respiration, oxygen is taken in, and carbon dioxide and energy (in the form of ATP) are produced. Photosynthesis occurs in the chloroplasts of plant cells, while cellular respiration occurs in the mitochondria of all eukaryotic cells. These two processes are connected, as the products of one process are the reactants of the other, forming a cycle.

Overall, photosynthesis and cellular respiration work together to sustain life on Earth by recycling oxygen and converting solar energy into usable forms for organisms. They are fundamental processes in biology, and understanding their interconnectedness is crucial to understanding how life functions.

I WILL GIVE BRAINLIEST Give an example of an adaptation within a population (micro-evolution) that has been observed or research the Blue Moon Butterfly for adaptations within their populations that have been observed. Be sure to include a link to your resource.

Answers

Answer: I found two on the Blue Moon Butterfly. The BMB evolved with a new gene that renders male butterflies immune to the Wolbachia bacteria passed down from the mother which kills males before they hatched. The bacteria was discovered in the butterflies by Greg Hurst in the 1990s.

Explanation: To find them, look up "blue moon butterfly." One website should be called Berkely(.)edu. The other can be found by looking up "wolbachia butterfly." The website is called theatlantic(.)com.

The remains of living organisms are compressed and stuck together over time to form a rock. What type of rock is it?
A. foliated metamorphic
B. chemical sedimentary
C. clastic sedimentary
D. organic sedimentary

Answers

Dead organisms when get compressed and stuck together inside soil for long time, gives rise to organic sedimentary rocks.

Option D

Explanation:

Organic sedimentary rocks are the types of sedimentary rocks generally formed in swamps or water logged areas over years where remains of living organisms like leaf or dead bodies of animals get petrified and stored under the soil for considerable amount of time and due to carbon deposition, it forms rocks. Most classical example of this type of sedimentary rocks is coal.

When a dead organism gets stuck and dies, firstly the body gets petrified. Then the minerals from surrounding soil and from the body itself gets to deposit in that place and slowly with time, it forms the rock.

How does a greenhouse works

Answers

Answer:

A greenhouse is a building with glass walls and a glass roof. Greenhouses are used to grow plants, such as tomatoes and tropical flowers. A greenhouse stays warm inside, even during the winter. In the daytime, sunlight shines into the greenhouse and warms the plants and air inside.

Explanation:

The greenhouse heats up the earth to ensure that the earth doesn’t get too cold. However due to an increase rate of carbon dioxide emissions the earth is heating too much leading to climate change which eventually leads to global warming
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