The dialectical thought of adulthood differs from the dichotomous thought of adolescence in that it is more complex.
The correct option is C) it is more complex.
Adolescents tend to think in black and white terms, seeing things as either good or bad, right or wrong, without considering the nuances and complexities of the situation. This dichotomous thought can lead to rigid thinking and inflexible problem-solving.
In contrast, the dialectical thought of adulthood involves the ability to hold multiple perspectives and see the shades of gray in a situation. Adults are able to reconcile conflicting viewpoints and integrate seemingly opposing ideas. This more nuanced thinking can lead to more creative solutions and better decision-making.
Furthermore, the dialectical thought of adulthood is more positive than the dichotomous thought of adolescence. Adults tend to be more optimistic and hopeful, while adolescents may be more pessimistic and prone to negative thinking. This positive outlook may be a result of the greater life experience and wisdom that adults have acquired.
Overall, the dialectical thought of adulthood is a more complex and nuanced way of thinking that allows for greater creativity, problem-solving, and positivity.
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he house mouse, mus musculus, has a diploid chromosome number of 20. (2n = 20) how many chromatids should be present in a mouse cell during metaphase?
The 20 diploid chromosomes of the house mouse, Mus musculus, are present. A mouse cell ought to contain 40 chromatids when it enters metaphase.
A cell's metaphase chromatid count is determined by multiplying the number of diploid chromosomes by two.
The diploid chromosome number in the case of the house mouse is 20 (2n = 20). Therefore, 20 x 2 = 40 chromatids would be present in a mouse cell during metaphase.
So a mouse cell should contain 40 chromatids during metaphase.
The smallest unit capable of performing the tasks required for life, a cell is the fundamental building block of all life. Cells can be solitary or multicellular and are the basic units of all living things, including plants and animals. A cell membrane surrounds them.
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what are the type of root found in maize
Answer:
Normally maize plants have three types of roots
Explanation:
seminal roots – which develop from radical and persist for long period;adventitious roots, fibrous roots developing from the lower nodes of stem below ground level which are the effective and active roots of plantbrace or prop roots, produced by the lower two nodes. The roots grow very rapidly and almost equally outwards and downwards. Suitable soils may allow corn root growth up to 60 cm laterally and in-depth.How would i give a physical description of the Ebola Virus?
Not a description of symptoms, but a physical description of the pathogen itself.
When red light strikes certain cones, they excitea particular bipolar cell. When green light strikes the same cones, they inhibitthe bipolar cell. This observation supports which theory
Answer:
The correct answer is : The opponent process theory
Explanation:
The opponent process theory states that one color of the color pair dominant over the other color and suppresses it. German physiologist Ewald Hering proposed it for the first time in late 18th century.
The opponent process theory of color vision suggests that our ability to perceive color is controlled by three receptor complexes with opposing actions. According to this theory the human eye perceive color is regulated by the 3 antagonist or opposing systems or channels in the eye.
For example, when red color hits the specific region of cones it activates the specific bipolar cells but when the cones stroked by the green color the bipolar cells are inhibited due to the members of different color channel or pair.
Thus, the correct answer is : The opponent process theory
arrows have plastic vanes or feathers that provide stability and accuracy in flight. what is the name for these vanes or feathers? fletching nock nocking point crest
The correct option is A ; Fletching , The arrows have plastic vanes or feathers at the end of it. These are known as fletchings. The purpose of these is to shift the center of pressure (COP) backwards.
COP is the point where the pressure is supposed to be concentrated(acting) on a body similar to center of gravity (CG). While the arrow is in flight it can divert from its path due to surrounding pressure.
With the help of COP we can cancel out these unwanted motions making sure the arrow follows the desired path. The COP should always be at the opposite end of CG. Since CG in the arrow is in near the tip, fletchings are attached at the end to shift the COP towards the end and thus giving the required stability to the arrow while in flight.
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Full Question ;
Arrows have plastic vanes or feathers that provide stability and accuracy in flight. What is the name for these vanes or feathers?
fletching
nock
nocking point
crest
Explain how water goes into root hairs. How
does this process differ from the way in which
minerals enter?
Answer:
Water enters the root hair cells by osmosis.
- This happens because soil water has a higher water potential than the cytoplasm of the root hair cell.
Minerals enter by active transport.
Explanation:
The root hair absorbs water from soil through osmosis and minerals through active transport.
What is root hair?"Root hair, or absorbent hairs, are outgrowths of epidermal cells, specialized cells at the tip of a plant root."What is osmosis?The process of movement of solvent from its higher concentration to lower concentration through semi-permeable membrane( only certain molecules can pass ) is called osmosis.What is active transport?"Active transport is the movement of molecules across a cell membrane from a region of lower concentration to a region of higher concentration—against the concentration gradient."Hence, through osmosis root hair absorb water from soil as its concentration is higher in soil than in plant hair cells and minerals concentration is lower in soil than in plant.
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1. For the cross bb×Bb, what is the expected genotype ratio?
Express your answers as three numbers separated by colons.
BB : Bb : bb =
2. What is the expected phenotype ratio?
Express your answers as two numbers separated by colon.
B : b =
The answer to the first question is, expected genotype ratio = 0:1:1 and the answer to the second question is, expected phenotype ratio = 0:1.
1. For the cross bb×Bb, the expected genotype ratio is 0:2:2. This is because there are no possible offspring with the genotype BB, two possible offspring with the genotype Bb, and two possible offspring with the genotype bb. So, the expected genotype ratio is 0:2:2 or 0:1:1.
2. For the expected phenotype ratio, there are two possible phenotypes, B and b. Since there are no offspring with the genotype BB, there are no offspring with the phenotype B. However, there are two offspring with the genotype Bb and two offspring with the genotype bb, so there are four offspring with the phenotype b. Therefore, the expected phenotype ratio is 0:4 or 0:1.
So, the answer to the first question is 0:1:1 and the answer to the second question is 0:1.
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What causes cyclones to rotate counter-clockwise in the northern hemisphere and clockwise in the southern hemisphere?
A. the Coriolis Effect
B. the jet stream
C.low-pressure air moving upwards
D. prevailing winds
Answer:
A
Explanation:
As the air rushes toward the center, it winds up moving in a curved path thanks to the Coriolis effect. This creates a circular spinning pattern as air travels from areas of high pressure to low pressure. That's why hurricanes originating in the northern hemisphere rotate counterclockwise.
Answer: the Coriolis Effect
Explanation:
The Coriolis Effect causes the cyclones to rotate counter-clockwise north of the Equator and clockwise south of the Equator.
which action must take place before transcription can begin?
Before transcription can begin, a process known as DNA unwinding and unzipping must take place.
Transcription is the process by which genetic information encoded in DNA is copied into a complementary RNA molecule. However, before transcription can occur, the DNA double helix must undergo unwinding and unzipping.
During DNA unwinding, the hydrogen bonds between the complementary nucleotide bases (adenine, thymine, cytosine, and guanine) are broken, causing the DNA double helix to separate into two strands. This separation exposes the DNA template strand, which serves as a template for RNA synthesis.
Once the DNA strands are unwound, the process of DNA unzipping occurs. Enzymes, such as helicase, help in separating the DNA strands by breaking the hydrogen bonds between the base pairs.
As a result, the DNA molecule is "unzipped" into two separate strands, with the template strand serving as a template for RNA synthesis.
After DNA unwinding and unzipping, the stage is set for transcription to begin. The RNA polymerase enzyme can then bind to the DNA template strand and initiate the synthesis of an RNA molecule using complementary RNA nucleotides.
Thus, DNA unwinding and unzipping are essential steps that precede the initiation of transcription.
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When protists and fungi are compared, which feature is unique to protists?
A. Spores
B. Hyphae
C. Flagella
D. Pseudopods
Answer:
Pseudopods is the unique to protists
Pseudopods are unique to protists.
What are protists?Any eukaryotic organism, that is, an organism whose cells comprise a nucleus, which is not a plant, animal or fungus is known as a protist. They comprises diverse number of organisms, which do not fall under the category of plant, animal, fungi, or bacteria.
Of the given options, pseudopods is confined to protists. They are the finger-like projections arising from the cell of amoeba, it is also known as false-feet. Within the structure, fluid cytoplasm produces and flows, which allows the organism to move. There are many distinct kinds of pseudopods known these are:
FilopodiaLobopodiaAxopodia ReticulopodiaThus, the correct answer is option d, that is, pseudopods.
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what are some ways that humans have affected the quantity and quality of fresh water supplies around the world?
Numerous major dangers to our water supplies exist, all of which are essentially brought on by human activities. Ecosystem degradation include urbanisation, deforestation, pollution, climate change, and sedimentation.
One of the biggest dangers to water supplies is ecosystem degradation, which frequently results from changes to the environment including clearing forests, turning natural landscapes into farms, expanding towns, constructing roads, and surface mining. Each kind of landscape modification will have a unique effect, typically having a direct effect on natural ecosystems and a direct or indirect effect on water supplies.
A comprehensive ecosystem approach to water management is necessary despite the challenge of incorporating the complexity of ecosystems into conventional evaluation and management processes.
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The diagram below shows reservoir interactions with the phosphorus cycle: Image shows arrows that point counterclockwise. Label A is over the water. An arrow points from there to label B, which is dead fish. From there, an arrow points to label C, which is rock under water. From there, an arrow points to label D, which is plants. Which statement best describes label C? Phosphorus is evaporating from the water into the atmosphere. Bacteria convert phosphate in dead organisms into phosphorus. Organisms, such as fish, absorb phosphorus from their food (plants and other animals). Sedimentary rocks are the largest source of phosphorus.
The sedimentary rοcks beneath the water are depicted by label C in the diagram. In the phοsphοrus cycle, sedimentary rοcks are οne οf the largest phοsphοrus reservοirs.
Minerals in rοcks that cοntain phοsphοrus weather οver time, releasing phοsphοrus intο the water and sοil, where plants and οther οrganisms can use it.
Which statement best describes label C?As a result, the statement that mοst accurately explains label C is: Phοsphοrus cοmes primarily frοm sedimentary rοcks.
Sedimentary rοcks: what are they?οne οf the three main types οf rοcks, sedimentary rοcks are fοrmed when οrganic materials, mineral fragments, and sediment cοmbine οver time. Sediments can travel by wind, water, οr ice and be depοsited in layers befοre being cοmpacted and cοnsοlidated intο sοlid sedimentary rοcks.
There are three main types οf sedimentary rοcks: οrganic, clastic, and chemical. Sandstοne, shale, and cοnglοmerate are examples οf preexisting rοck fragments that make up clastic sedimentary rοcks.
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Label C in the diagram represents the sedimentary rοcks that are present belοw the surface οf the sea. Sedimentary rοck fοrmatiοns are amοng the greatest reservοirs οf phοsphοrus in the phοsphοrus cycle.
When minerals in phsphrus-cοntaining rοcks weather οver time, phosphorus is released intο the water and sοil, where plants and οther οrganisms can use it.
What definitiοn best fits label C?The phrase "Phοsphοrus οriginates predοminantly frοm sedimentary rοcks" sums up label C the best.
What precisely are sedimentary rοcks?Sedimentary rοcks, οne οf the three majοr types οf rοcks, fοrm thrοughοut time as a result οf the fusiοn οf οrganic mοlecules, mineral fragments, and silt. Befοre being cοmpacted and cοllided intο deep sedimentary rοcks, sediments can be transpοrted by wind, water, οr ice. They can alsο be depοsited in layers.
There are three main types οf sedimentary rοcks: οrganic, clastic, and chemical. Sandstοne, shale, and cοnglοmerate are examples οf preexisting rοck fragments that make up clastic sedimentary rοcks.
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How long will it take for 40.0 grams of Radium-226 (Ra-226) to decay to leave a total of 2.5 grams of Ra-226? Ra-226 has a half-life of 1600 years.
Answer:
6400 years
Explanation:
Given that;
N/No =(1/2)^t/t1/2
No = amount of radioactive material originally present
N = amount of radioactive material present at time t
t= time taken for N amount of radioactive material to remain
t1/2 = have life of the radioactive material
2.5/40 = (1/2)^t/1600
1/16 = (1/2)^t/1600
(1/2)^4 = (1/2)^t/1600
4 = t/1600
t = 4 * 1600
t = 6400 years
gomez mt, magiakou ma, mastorakos g, chrousos gp. the pituitary corticotroph is not the rate-limiting step in the postoperative recovery of the hypothalamic-pituitary-adrenal axis in patients with cushing syndrome. j clin endocrinol metab 1993; 77(1):173-7.
The pituitary corticotroph is not the rate-limiting step in the postoperative recovery of the hypothalamic-pituitary-adrenal axis in patients with Cushing syndrome.
The study mentioned in the question, published in the Journal of Clinical Endocrinology and Metabolism in 1993, found that the pituitary corticotroph is not the rate-limiting step in the postoperative recovery of the hypothalamic-pituitary-adrenal axis in patients with Cushing syndrome. The study conducted by Gomez et al. in 1993, titled "The pituitary corticotroph is not the rate-limiting step in the postoperative recovery of the hypothalamic-pituitary-adrenal axis in patients with Cushing syndrome," examined the recovery of the hypothalamic-pituitary-adrenal (HPA) axis after surgery in patients with Cushing syndrome.
Cushing syndrome is a condition characterized by the overproduction of cortisol, a hormone produced by the adrenal glands. In patients with Cushing syndrome, the HPA axis is dysregulated, leading to excessive cortisol production. Surgical intervention is often required to remove the source of cortisol overproduction, such as an adrenal tumor or an ACTH-producing pituitary adenoma. The study aimed to investigate whether the pituitary corticotroph, which produces adrenocorticotropic hormone (ACTH), plays a rate-limiting role in the recovery of the HPA axis after surgery. The researchers analyzed the postoperative recovery of the HPA axis in a group of patients with Cushing syndrome. The results of the study showed that the pituitary corticotroph is not the rate-limiting step in the postoperative recovery of the HPA axis. This means that the recovery of the HPA axis after surgery is not primarily dependent on the functioning of the pituitary corticotroph.
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A student observes that a plant has droopy leaves and stems and infers that the rate of photosynthesis has slowed in the plant. Which statement provides evidence to support the student's inference?
Answer:
The water pressure in the plant's vacuole is low, and without water, the chloroplasts cannot convert carbon dioxide to glucose during photosynthesis.
Explanation:
The water pressure in the plant's vacuole is low, and without water, the chloroplasts cannot convert carbon dioxide to glucose during photosynthesis. The water pressure in the plant's ribosomes is low, and without water, the chloroplasts cannot convert carbon dioxide to glucose during photosynthesis. The water pressure in the plant's vacuole is low, and without water, the mitochondria cannot convert carbon dioxide to glucose during photosynthesis. The water pressure in the plant's ribosomes is low, and without water, the mitochondria cannot convert carbon dioxide to glucose during photosynthesis.The correct answer would be that the water pressure in the plant's vacuole is low, and without water, the chloroplasts cannot convert carbon dioxide to glucose during photosynthesis.
Photosynthesis generally requires water as one of its reactants in the formation of carbohydrates for plant nutrition.
\(6CO_2 + 6H_20 --> C_6H_1_2O_6 + 6O_2\)
The process takes in the chloroplast of green plants. Without adequate water which is usually stored in the vacuoles of plant cells, the conversion of water to carbohydrates would reduce or cease totally.
Answer: The question is incomplete and the options are not given, here are the options from another websites.
A. The water pressure in the plant's vacuole is low, and without water, the chloroplasts
cannot convert carbon dioxide to glucose during photosynthesis.
O
B. The water pressure in the plant's ribosomes is low, and without water, the chloroplasts
cannot convert carbon dioxide to glucose during photosynthesis.
O
C. The water pressure in the plant's vacuole is low, and without water, the mitochondria
cannot convert carbon dioxide to glucose during photosynthesis.
D. The water pressure in the plant's ribosomes is low, and without water, the
mitochondria cannot convert carbon dioxide to glucose during photosynthesis.
With which cellular process are ribosomes directly involved?
The correct option is C.
Explanation:
When a plants vacuole has no pressure and water, the leaves and stems will drop because vacuole is an organelle that serve as storage for food nutrients and water . When a plant has no water for a long period of time, the vacuole will lose water, which will make the cell to lose shape, and the leaves and stems will wilts and drop ,and this make the mitochondria not to be able to convert chemical energy in glucose using carbondioxide and water to Energy or ATP because there is no supply of water or there is water lose.
A person has one of their lower arms removed in a procedure known as an amputation. After this, what will be the total number of bones in their appendicular skeleton?
A person has one of their lower arms removed in a procedure known as an amputation therefore the total number of bones in their appendicular skeleton will be 125.
What is a Skeleton?This is referred to as the structural frame that supports the body of an animal and it consists of bones which are living tissues and help provide structural integrity. They are also involved in the movement of various parts of the body for our daily activities.
The adult human skeleton is made up of 206 bones while the total number of bones in their appendicular skeleton is 126 and we were told that amputation occurred which led to the loss of one of the lower arms.
This therefore means that the total number of bones in their appendicular skeleton will be 126 - 1 = 125 which is therefore the reason why it was chosen as the correct choice.
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what is love for and why?
Answer:
Being there for someone is what a real relationship needs. When we neglect to put in the effort is when things don't work out with someone that could have been perfect for us.
Love is considered to be both positive and negative, with its virtue representing human kindness, compassion, and affection, as "the unselfish loyal and benevolent concern for the good of another.
Explanation:
Which trophic level is an omnivore (eats plants and meat)?
I believe they are the third trophic level. Please tell me if i'm wrong!
this important citric acid cycle intermediate is also formed during gluconeogenesis (from pyruvate):
Main Answer: The important citric acid cycle intermediate that is also formed during gluconeogenesis from pyruvate is Oxaloacetate.
Supporting Answer: During gluconeogenesis, pyruvate is converted to oxaloacetate by the enzyme pyruvate carboxylase. Oxaloacetate is an important intermediate in the citric acid cycle, where it reacts with acetyl-CoA to form citrate. In the citric acid cycle, citrate is then metabolized through a series of reactions to produce energy in the form of ATP. In addition, oxaloacetate plays a crucial role in the regulation of the citric acid cycle by controlling the rate of entry of acetyl-CoA into the cycle. It is also involved in several other metabolic pathways such as the aspartate synthesis pathway and the urea cycle. The formation of oxaloacetate during gluconeogenesis is important because it allows the carbon skeletons of certain amino acids to be converted to glucose for energy production.
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Which is the first step that geological must do to compare rock layers at distant locations.
A. Find the absolute age of rocks at both locations
B. Compare a layers at one location to layers at other locations
C. Identify index fossils in one or more layers at one locations
D. Collect fossil from different locations to study the organisms lifestyles
Answer:
B. Compare a layers at one location to layers at other locations.
Explanation:
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How are whales and hummingbirds related?
Whales and hummingbirds are categorised as vertebrates, which means they are both animals with backbones. Both of them evolved from terrestrial creatures. Some experts think that a small, furry, four-legged creature that existed around 330 million years ago is the ancestor of both whales and hummingbirds.
MetabolismThe metabolism of hummingbirds and whales is one similarity. Hummingbirds drink a lot of nectar, which is rich in sugar and requires a lot of energy to keep their wings continuously flapping. Whales, on the other hand, don't use a lot of energy to stay warm because they live underwater and have a relatively slow metabolism.
However, in order to power their movements during a hunt, they need an enormous amount of energy. The high fat content of their meal, such krill or small fish, is where they get this energy.
MigrationThe ability to migrate is another similarity between hummingbirds and whales. To go to their breeding or wintering areas, hummingbirds have been known to travel hundreds or even thousands of miles in the air. Similar to how some whale species may migrate thousands of miles, this is also known. For instance, grey whales travel to the warm seas off the coast of Mexico from their feeding areas in the Arctic to mate and give birth.
Both species have exceptional adaptations that have developed over time to enable these long, energy-intensive migrations, which demand a lot of preparation and energy.
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Keyword(s)Terrestrial Creatures: Animals are that can survive and reproduce on land.
Metabolism: The chemical reactions that take place inside a living thing to keep it alive.
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Shown below are the first 50 bases of the coding strand of a hypothetical gene encoding a peptide. 5'-TAATCGAATGCTGCTGTATGGCTGGAAACGAAACGTGAATCAGCGGCAAT-3' Write the first 5 nucleotides of the mRNA transcript for this gene. Make sure to indicate 5′ and 3:
The first 5 nucleotides of the mRNA transcript, written in the 5' to 3' direction, for the given coding strand are:
5'-UAUAGCUUACGACGACAUACCUGACCUUUGCUUUGCAUUCAGCGCCGUAU-3'
Given the coding strand: 5'-TAATCGAATGCTGCTGTATGGCTGGAAACGAAACGTGAATCAGCGGCAAT-3'To Generate the mRNA transcript, first, replace each occurrence of thymine (T) with uracil (U) since RNA uses uracil instead of thymine.Following this rule, we obtain the following mRNA sequence for the first 5 nucleotides:5'-UAUAGCUUACGACGACAUACCUGACCUUUGCUUUGCAUUCAGGCCGUAU-3'The sequence is written in the 5' to 3' direction, which is the same direction as the coding strand and the direction in which mRNA is synthesized.The resulting mRNA sequence represents the complementary RNA strand that can serve as a template for protein synthesis.Thus, 5'-UAUAGCUUACGACGACAUACCUGACCUUUGCUUUGCAUUCAGCGCCGUAU-3', this sequence represents the mRNA transcript.
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The ability to synthesize RNA in the laboratory is critical to many techniques. In vitro transcription requires a purified linear DNA template containing a promoter, ribonucleotide triphosphates, a buffer system that includes DTT and magnesium ions, and an appropriate phage RNA polymerase. Many common plasmid cloning vectors include phage polymerase promoters. They often contain two distinct promoters, one on each side of the multiple cloning site, allowing transcription of either strand of an inserted sequence. Plasmid vectors used as transcription templates are linearized by restriction enzyme digestion, during which the reaction does not include SAP. Following linearization, explain why the DNA does not reform the circular plasmid.
If SAP is not used and the DNA after linearization does not reform the plasmid, there are many reasons, such as:
Using another phosphatase enzyme that removes the phosphate tail, preventative ligation.Insufficient concentration of ligase enzymes in the mixture.Some of the factors required for ligase activity, such as magnesium ions, are insufficient.Ligation will occur at a certain temperature, if the temperature is not optimal then it will not occur.In vitro transcription requires a pure linear DNA template containing a promoter, ribonucleotide triphosphate, a buffer system that includes DTT and magnesium ions, and the appropriate phage RNA polymerase. The exact conditions used in a transcription reaction depend on the amount of RNA required for a particular application.
DNA can be found in two forms, namely linear and circular forms. Linear DNA is DNA in the form of a straight chain with both ends free. Linear DNA can be found in eukaryotic nuclei. Circular DNA is circular DNA, mostly found in prokaryotes. Circular DNA is found in the cytoplasm of prokaryotic cells (bacterial plasmids), in mitochondria, or chloroplasts
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What are clastic rocks formed from?
A. fragments of minerals or rocks
B. heat and pressure applied to an existing rock
C. mineral grains that precipitate by evaporation or another type of chemical event
D. the remains of animals and plants
Match the correct organelle with the correct process:
o
photosynthesis - chloroplast; cellular respiration - mitochondria
O photosynthesis - nucleus; cellular respiration - mitochondria
O photosynthesis - ribosomes, cellular respiration - nucleus
O photosynthesis - mitochondria; cellular respiration - chloroplast
Answer: photosynthesis - chloroplast; cellular respiration - mitochondria
Explanation:
the correct organelle with the correct process are photosynthesis chloroplast; cellular respiration mitochondria
what is photosynthesis ?The process in which plants, algae and certain bacteria use light energy of sunlight, water, carbon dioxide and convert light them into chemical energy and starch called as photosynthesis.
Photosynthesis occur in special organelles named chloroplast which has its own DNA, genes and hence can synthesize their own proteins.
Chloroplasts have stroma, fluid, and stack of thylakoids known as grana, three types of chlorophyll such as chlorophyll a, chlorophyll b, and carotenoids.
Oxygenic photosynthesis is commonly observed in plants, algae and cyanobacteria where electrons are transferred from water to carbon dioxide by using light energy, to produce energy, oxygen is produced along with carbohydrates.
Anoxygenic Photosynthesis is seen in certain bacteria, such as green sulphur bacteria and purple bacteria.
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What is the direction of the moving force of air? Responses
Answer:
Explanation:
The pressure gradient causes the air to move horizontally, forcing the air directly from a region of high pressure to a region of low pressure. The Coriolis force deflects the direction of the flow of air and causes the air to flow parallel to the isobars.
I hope this helped
1. What would you predict would happen to the ratio of the peppered moth population as a result of cleaner burning fuels?
2. in western Africa there are birds called Blackbelly seed crackers. Some have small bills and feed on soph seeds while others have large bills which are able to crack the shells of hard seeds. would you protect natural selection for or against survival braids with an intermediate sized beak? what are the variables are environmental conditions that would affect their survival?
Explanation:
Raquel has gross pay of $732 and federal tax withholdings of $62. Determine Raquel’s net pay if she has the additional items withheld: Social Security tax that is 6. 2% of her gross pay Medicare tax that is 1. 45% of her gross pay state tax that is 21% of her federal tax a. $600. 99 b. $610. 54 c. $641. 83 d. $662. 99.
describe the relationship between genotypes and phenotypes
Answer:
Genotype is the potential, it is the set of genes.
Phenotype is the expression of those genes, showing the dominant/ activated gene.
For example, my mother and members of her family are short with hazel eyes and dark hair.
My dad and his family are tall, with brown eyes and dark hair.
I will have genes for height that vary- short or tall. I will have genes for eyes hazel or brown.
I will have genes for hair- dark.
You don’t know, based on what i’ve told you, what my height or eye colour is. That’s my genotype.
I am tall, with hazel eyes and dark hair. That’s my phenotype.
This is really over simplified, but it should help you understand.
Genotype is the blueprint/ building plans. Phenotype is the building.
2 The body has to always maintain a constant internal environment. For example, the hormones
aldosterone and antidiuretic hormone (ADH) help regulate the balance of bodily fluids by causing the
kidney to excrete or retain fluids and electrolytes. This constant regulation of hormones and bodily fluids
to maintain balance is an example of which cellular process?
F) Active Transport
G) Negative Feedback
H) Positive Feedback
J) Homeostasis
Answer:
H
Explanation:
I am not 100% sure but that seems like a reasonable answer
Answer: J
Explanation:Homeostasis takes place in order to maintain a balance.
1. What is fluid? What states of matter are considered fluids?
2. What role does blood have in the human body?
3. In what way(s) can fluids be harmful to society or the environment?
4. Describe 3 examples (s) in which fluids can help a machine operator.
5. List 3 of the fluids in our bodies that are important for our survival.
Please don't copy and paste
Answer:
1. Fluids are substances such as liquid and gas that can easily flow and have random molecular motion.
2. Blood transports oxygen to many parts of our bodies. It also takes carbon dioxide to the lungs, kidneys, or other filters to be removed from our bodies.
3. When a fluid is contaminated, it may cause serious damage to the environment. For example, if an organism consumes polluted water, it could get very sick and possibly die.
4. Fluids such as water can be used to cut metal by being sprayed at a high speed. Gasoline is used to run all kinds of machines. Water can also be used to clean and cool down machines.
5. Blood, sweat, and urine are all important fluids in our bodies and are created by our bodies.
Explanation:
Really hope this helps you!