An organ system consists of organs that work together to carry out a vital body function. These systems include groups of organs that coordinate with various cells and tissues for the survival of the organism.
Explanation:An organ system in the context of biology refers to c. organs that collectively perform a vital body function. This organ system comprises different organs working in harmony, which, in turn, coordinate with various cells and tissues. These organs collectively perform a specific function that is crucial to the survival of the organism. For instance, the digestive system, including the stomach, small intestine, and large intestine, works together to break down food, absorb nutrients, and eliminate waste.
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James is 6 feet tall. Leroy is 5 feet 2 inches tall. There are surely many individual differences between James and Leroy, but sociological research predicts that based on height alone, James is likely to have:
Answer:
better health
Explanation:
According to sociological research, it has been suggested that physical factor, such as height, can influence the movement of an individual between social strata or classes of a society. The upward social movement of an individual as influenced by a tall height is said to present an opportunity for the individual to be exposed to a better life and status in the society, which would have a beneficial impact on the overall health of the individual.
Based on height alone, James is likely to have a better health as a result of improved better social status as he is favored to move up the social ladder of the society according to sociological research.
Channel proteins are selective. Each channel protein has a structure that permits only a particular type of ion or small molecule to pass through it. To what does the term gated channel refer?
Answer & explanation:
Channel proteins are specific types of proteins that have aqueous channels along their molecules and are associated with substance transport.
These proteins act passively because they are part of the passive transport of cells, since there is no energy expenditure to internalize the substances, they enter the protein channels requiring a favorable concentration gradient for this process to occur.
Channel proteins may have gated or non-gated channels.
Non-gated channels spend most of their time open allowing ions to move with no restrictions; Gated channels allow regulation of the movement of molecules between the fluid intracellular and extracellular. These channels remain closed until they receive a specific chemical or electrical signal.Which way does the coriolis effect deflect wind in the northern hemisphere
Answer:
Towards the right
Explanation:
The Coriolis force is usually defined as the force that acts on the global wind and ocean currents and allows them to move in a clockwise and anticlockwise manner, in the northern and southern hemispheres respectively. This force occurs due to the rotation of the earth.
The strength of this Coriolis force gradually increases with the increasing latitudes and also increases with the gradually decreasing speed of the earth's rotation. So, the value of this force is observed to be highest at the poles and is absent at the equator.
Thus, in the northern hemisphere, the Coriolis force deflects the wind to the right side.
Chromatids are separated from each other during which processes?
Answer: Chromatids separate from each other during mitosis and meiosis processes and the process is called chromatids segregation.
Explanation:
Chromatids segregation occur majorly in eukaryotes and it is the process whereby two sister chromatids produced as a result of DNA replication separate from each other and move to the opposite poles of the nucleus. This process occur both in mitosis and meiosis. Segregation occurs continually as replication occurs compare to in prokaryotes.
During cell division, chromatids are separated from each other in the stage called anaphase.
Explanation:During the process of cell division, chromatids are separated from each other in a stage called anaphase. Anaphase is a crucial step in both mitosis and meiosis, where the sister chromatids, which form a duplicated chromosome, are pulled towards opposite ends of the cell by spindle fibers. This separation creates two identical daughter chromosomes that will eventually be divided into separate cells.
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Name two pathogenic bacteria from each of the oxygen requirement groupings, their gram stain reaction and the diseases they cause
The diet of many birds consists of hard seeds that need to be broken up for digestion. What part of the bird digestive system that is not found in many other vertebrates probably is responsible for this function?
Answer:
Proventriculum and gizzard
Explanation:
In birds, the stomach is divided into two compartments: the proventriculum and the gizzard. These structures are less distinct in carnivorous species, and well-prominent in grain and seed-feeding species.
The proventriculum is a structure located between the lower esophagus and the gizzard. It is covered by a glanular mucous layer with secretory function and is therefore responsible for the secretion of enzymes and hydrochloric acid for digestion.
The gizzard is considered a muscular stomach, responsible for crushing and macerating food (as in chewing). It has a highly developed and strong musculature, resistant to the action of hydrochloric acid.
In what dura mater fold is the superior sagittal sinus located?
Answer: The superior saggital sinus is located in the falx cerebri.
Explanation:
The superior sagittal sinus also called superior longitudinal Linus is found in the human head, it is an unpaired area located in the falx cerebri. It drain blood from the lateral region of anterior cerebral hemispheres to the confluence of the sinuses.
Allele A has 235 codons. Allele a (an alternative allele of the same gene) has 233 codons. When comparing the protein encoded by allele A to that encoded by allele a, protein A must be:______
Explanation:
A must be two amino acids longer -each codon encodes one amino acid.
Sequences of DNA make up genes which can have different forms called alleles. DNA is transcribed into mRNA and later translated into amino acids which are linked together by rRNA to form proteins.
Further Explanation:
The nucleic acids are comprised of smaller units called nucleotides and function as storage for the body’s genetic information. These monomers include ribonucleic acid (RNA) or deoxyribonucleic acid (DNA). They differ from other macromolecules since they don’t provide the body with energy. They exist solely to encode and protein synthesis.
Basic makeup: C, H, O, P... life on Earth is Carbon based nucleotides contain 5-carbon sugars, and nitrogen; the bases may contain single to double bond rings
All the genetic information within the eukaryotic cell is stored within the nucleus as helical DNA. This DNA is tightly wound around histones as chromosomes. Codons are three nucleotide bases encoding an amino acid or signal at the beginning or end of protein synthesis.
RNA codons determine certain amino acids so the order in which the bases occur within in the codon sequence designates which amino acid is to be made bus with the four RNA nucleotides (Adenine, Cysteine and Uracil) Up to 64 codons (with 3 as stop codons) determine amino acid synthesis. The stop codons ( UAG UGA UAA) terminate amino acid/ protein synthesis while the start codon AUG begins protein synthesis.
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Bettina describes herself as a lesbian and is in a long-term relationship with another woman, whom she recently married. The best biological explanation for Bettina's sexual orientation is that there (select one):
a. was greater exposure to androgens while she was in the womb.
b. was an insufficient level of estrogen released during puberty.
c. is an extra Y sex chromosome in her DNA.
d. is inadequate functioning of her ovaries.
Answer:
Was greater exposure to androgens while she was in the womb.
Option: (b)
Explanation:
The greater exposure to testosterone hormone causes to develop the women into the masculine characters. In case of Bettina, as she is attracted towards to women this shows her greater exposure to androgen while she was in the womb. The high testosterone hormone may also cause the development of facial hairs, man characteristics nature and turns girls into lesbian by the emotional attachment towards the girls.Of the answer choices, what is the most likely reason that paracrine signaling does not activate the cell that is producing the signaling molecule? The cell's receptors have a mutation. The neighboring cells are too far away. The concentration of the signaling molecule is not high enough. The cell does not have the proper receptor.
Answer:
The correct answer is The cells do not have proper receptor.
Explanation:
During paracrine signaling a signaling molecules are generated from one cell.The generated signaling molecule then binds to the receptor of neighboring cell to carry specific signal from donor cell to the acceptor cell.
But the signaling molecules will not bind to the cell that is producing it because that producing cell do not contain proper receptor to bind that signaling molecule.
The binding of signaling molecule to the receptor of its producing cell occur during autocrine signaling.
Final answer:
The most likely reason paracrine signaling does not activate the signaling cell is that the cell lacks suitable receptors for that signal, ensuring signals are directed to and activate neighboring cells instead.
Explanation:
The most likely reason that paracrine signaling does not activate the cell producing the signaling molecule is that the cell does not have the proper receptor for that signal. Paracrine signals are those that are released by cells and act on adjacent nearby cells. For the signaling to be effective, the receiving cells must have appropriate receptors specific to the signaling molecules. Since the cell producing the signal is releasing it for neighbouring cells, it typically lacks receptors to respond to that specific signal or the receptors that are present don't bind to the cell's own signaling molecules as effectively. This specialization of cells ensures that signals are directed and that cells can coordinate behaviors in a localized manner without being activated by the signals they produce themselves.
In contrast, autocrine signaling involves cells that have receptors for the signals they produce, and thus, they can indeed activate themselves. However, in paracrine signaling, the signals move through the extracellular matrix and elicit quick responses. To ensure the response is localized, these signaling molecules are quickly degraded or removed, thereby preventing their activation of the producing cell and establishing a concentration gradient for efficient diffusion when released again.
When first used in medicine in the 1940s, penicillin was uniformly effective in killing the bacterium Staphylococcus aureus. Today, ____________________ has led to an increase in antibiotic-resistant alleles, and humans are increasingly at risk from untreatable Staphylococcus aureus infections
Answer:
The correct answer is "natural selection in Staphylococcus aureus populations".
Explanation:
Natural selection is a process at which populations of organisms develop advantageous traits under the premise of survival of the fittest. In this case, the continuous exposure to penicillin and other antibiotics since 1940s have a natural selection effect in Staphylococcus aureus populations, allowing an increase in antibiotic-resistant alleles in the bacteria, which acts as an advantageous trait for them. Antibiotic resistance is a serious medical concern that has been addressed by a culture of responsible use of antibiotics and development of novel treatments for infections.
Besides producing sugar for itself, a plant also needs to absorb nitrogen to build proteins, salts to make concentration gradients, and: a) potassium to make enzymes. b) starch to power the cells. c) chlorophyll to carry out photosynthesis. d) phosphorus to make ATP. e) pyruvate for fermentation.
A plant absorbs phosphorus to make ATP, an energy-carrying molecule, which is crucial for various metabolic processes within the plant. Phosphorus is not only necessary for ATP synthesis but also for nucleic acids and other cellular constituents. While other elements are also absorbed, phosphorus is specifically related to ATP production.
The correct option is 'D'.
Besides producing sugar for itself, a plant also needs to absorb nitrogen to build proteins, salts to make concentration gradients, and the correct option is d) phosphorus to make ATP.
While potassium is indeed necessary for enzyme function, and chlorophyll is essential for photosynthesis, it is phosphorus that is a critical component for the creation of ATP, which provides energy for a plant's metabolic processes.
Starch, on the other hand, is a stored form of glucose that provides energy for the plant especially during germination but is not absorbed from the environment. Pyruvate is a product of glycolysis and is used in fermentation; however, it is also not absorbed from the soil.
Photosynthesis is an essential process where plants manufacture their own food using carbon dioxide and water in the presence of sunlight. The glucose produced during this process is used for immediate energy needs or stored as starch for later use. Elements like nitrogen, phosphorus, and potassium are absorbed from the soil and are vital for various plant functions, including the synthesis of proteins, nucleic acids, and ATP.
Which of the following is not found in bacteria? Which of the following is not found in bacteria? control of chromatin remodeling transcriptional control control of chromatin remodeling, RNA splicing, and transcription control of both RNA splicing and chromatin remodeling control of RNA splicing
Answer:
Control of both RNA splicing and chromatin remodeling control of RNA splicing.
Explanation:
RNA is present as genetic material but in case of some viruses only. RNA contains the nitrogenous base ( adenine, guanine, uracil and cytosine), oxyribose sugar and phosphate group.
The bacteria do not have well developed nucleus so no chromatin remodification occurs in case of bacteria. Bacteria is devoid of introns and contains only exons in its RNA structure. The splicing process is not required in case of bacteria.
Thus, the correct answer is option (4).
Proteins destined for the following locations are sorted in the trans-Golgi:
a. lysosome, plasma membrane, secretion
b. endoplasmic reticulum, lysosome, mitochondria
c. nucleus, secretion, plasma membrane
d. lysosome, plasma membrane, peroxisome
e. smooth endoplasmic reticulum, plasma membrane, secretion, lysosome
Answer:
A
Explanation:
Golgi apparatus is an organelle in eukaryotic cells that stores and modifies (might include addition of sugar groups) proteins and lipids for certain functions and prepare them for transport to other parts of the cell.
In the Endoplasmic reticulum, proteins fold into into their correct shape. Some of them are transported to the Golgi apparatus in membrane vesicles. Some proteins need to do their jobs in the Golgi (they are said to be Golgi-resident). They are transported from the golgi appratus to their final destinations through a secretory pathway. It involves sorting proteins into different kinds of transport vesicles, which emanate from the trans Golgi network and deliver their contents to the appropriate cellular locations.
Proteins that are membrane embedded are conveyed to the plasma membrane (integral membrane proteins) by constitutive secretion. Proteins can divert from constitutive secretion pathway and be targeted towards other destinations such as lysosomes (as lysosomal proteins) and regulated secretion from cells (to the cell exterior).
Proteins destined for the lysosome, plasma membrane, and secretion are sorted in the trans-Golgi network. This part of the Golgi apparatus acts as a crossroads for protein traffic, sending proteins to their correct destinations.
Explanation:The answer to the question is Proteins destined for locations such as the lysosome, plasma membrane, and for secretion are sorted in the trans-Golgi network. The trans-Golgi network (TGN) is the part of the Golgi apparatus involved in sorting proteins to their correct destinations. It effectively acts as a crossroads for protein traffic, sending proteins to the right places based on specific sorting signals contained within the proteins themselves.
For example, proteins that will end up in the lysosome (which serves as the cell's waste disposal and recycling center) have a specific marker that the TGN recognizes. The TGN then sends these proteins to the lysosome. Likewise, proteins destined for the plasma membrane (which controls what enters and leaves the cell) and those destined for secretion (sent out of the cell to perform various functions) are recognized by the TGN and sent to their respective locations.
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Which factor has a positive effect on the quality of sleep?A. Sleeping in a quiet environment.B. Sleeping hours that synchronize with the circadian rhythm.C. Spending additional time in stage II of the sleep cycle.D. Sleeping in a dark environment
Answer:
A. Sleeping in a quiet environment
Explanation:
As it's free from stress
Furosemide is a loop diuretic drug that inhibits the pump responsible for active reabsorption of Na and Cl in the nephron loop. Predict the effect of furosemide on the quantity of urine produced.
Choose the best answer.
a.There will be no urine produced.
b.There will be a small amount of urine produced.
c.There will be a large amount of urine produced.
d.There will be no change in the amount of urine produced.
Final answer:
Furosemide is a loop diuretic that inhibits Na+ and Cl- reabsorption in the nephron loop, leading to a decrease in water reabsorption and thus a larger amount of urine produced.
Explanation:
The drug in question, furosemide, is a loop diuretic that targets the nephron, specifically the ascending limb of the loop of Henle, which is crucial for the reabsorption of sodium (Na+) and chloride (Cl-) ions. This reabsorption is important for the concentration of urine, as it allows for water to be reabsorbed in subsequent parts of the nephron. When furosemide inhibits this process, it prevents Na+ and Cl- reabsorption, which in turn leads to less water being reabsorbed. This results in more water remaining in the urinary system, thus increasing the volume of urine produced. Therefore, the predicted effect of furosemide on the quantity of urine produced is that there will be a large amount of urine produced.
Rocky Mountain juniper (Juniperus scopulorum) and one-seeded juniper (J. monosperma) have overlapping ranges. Pollen grains (which contain sperm cells) from one species are unable to germinate and make pollen tubes on female ovules (which contain egg cells) of the other species These two juniper species are kept separate by:______
a. temporal isolation
b. habitat isolation
c. behavioral isolation
d. gametic isolation
Final answer:
Rocky Mountain juniper and one-seeded juniper are kept separate by gametic isolation, preventing their pollen and ovules from successfully interacting and fertilizing.
Explanation:
The Rocky Mountain juniper (Juniperus scopulorum) and one-seeded juniper (J. monosperma) are kept separate by a process known as gametic isolation. This type of reproductive isolation occurs when pollen grains from one species (which contain the sperm cells) are not able to germinate and create pollen tubes on the female ovules (which contain the egg cells) of another species. Since these two juniper species have pollen and ovules that do not interact successfully to allow fertilization, they are unable to produce viable offspring together. This mechanism prevents the gene pools of the two species from mixing, thereby maintaining them as separate species despite their overlapping ranges.
Kathy downloaded a few photos of local organic farms from Flickr's Creative Commons (CC) pool. She follows the rules of the photographer's specific CC license and uses them in her digital video about sustainable agriculture. That's OK.True / False.
Answer:
True.
Explanation:
As Kathy downloaded the photos from the Creative Common of Flickr and is following the rules of the photographer's specific CC license, she can use the photos for her digital video about sustainable agriculture. If she was not following the photographer's rules, she could have legal problems.
Which of the following could be absorbed by cells lining the digestive tract? View Available Hint(s) Which of the following could be absorbed by cells lining the digestive tract? starches amino acids proteins DNA
Answer:
The correct answer is amino acids.
Explanation:
When food is consumed it contains nutrients in the form of polymers like starch, proteins, lipids and nucleic acids(DNA). These polymers can not be absorbed directly by the body because of their complexity and larger structures.
Therefore they must be broken down into smaller forms by digestive enzymes. After digestion, they are broken into smaller and simpler forms like amino acids, glucose, fatty acids, etc. Then these simpler forms are absorbed through the digestive tract in the body.
So as amino acid is the simpler form of proteins so it can be absorbed by cells lining the digestive tract.
The ________ is the space between the dura mater and the bone of the vertebra.
Answer:
the space between the dura mater and the bone of the vertebra is the Epidural
The epidural space is the space between the dura mater and the bone of the vertebra.
What is dura matter?It is one of the tissue that forms meninges in brain.Meninges consists of: outer thick and dense membrane; dura matter, middle fluid filled structure that cushions the brain; arachnoid and inner thin and delicate; pia matter.What is epidural space?It is a space between the dura matter and vertebral wall.It contains fat and blood vessels.It is filled with cerebrospinal fluid.
Hence, the correct answer is: epidural space.
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In humans, red-green color blindness is determined by an X-linked recessive allele (a), whereas eye color is determined by an autosomal gene, where brown (B) is dominant over blue (b). a. What gametes can be formed with respect to these genes by a heterozygous, brown-eyed, color-blind male? b. If a blue-eyed mother with normal vision has a brown-eyed, color-blind son and a blue- eyed, color-blind daughter, what are the genotypes of both parents and children? If the dominant allele A is negeceary fos oarino.
Answer:
1. XaY,BB and XaY,Bb
2. Father: XaY,Bb
Mother: XAXa,bb
Son: XaY,Bb
Daughter: XaXa,bb
Explanation:
1. Gender: Male --> XY, Color-blind male: XaY, Brown-eyed: BB or Bb. Combine the aforementioned, the gametes can be formed with respect to these genes by a heterozygous, brown-eyed, color-blind male are: XaY,BB and XaY,Bb
2. MOTHER: Blue-eyed female with normal vision : XAXA,bb or XAXa,bb
SON: brown-eyed male, color-blind: XaY,BB or XaY,Bb
DAUGHTER: blue- eyed female, color-blind: XaXa,bb
From the genotype of the son, we can assume that the father must has brown eyes: BB or Bb. Besides, the daughter has blue eyes. Thus, the daughter received the autosomal gene "b" from her parents. At the conclusion, the father eyes color genes is Bb. We can assume that Father genre can be XAY,Bb or XaY,Bb.
Both of son and daughter are color-blind. Thus, Mother genotypes should have Xa. Finally, Mother Genotypes is: XAXa,bb.
Because both children are color-blind, the father genre is: XaY,Bb, brown eyes and color-blind male
Mother (XAXa,bb) × Father (XaY,Bb)
Son 1: (XAY,Bb) clear vision and brown eyesSon 2: (XAY,bb) clear vision and blue eyesSon 3: (XaY,Bb) color blindness and brown eyesSon 4: (XaY,bb) color blindness and blue eyesDaughter 1: (XAXa,Bb) clear vision and brown eyesDaughter 2: (XAXa,bb) clear vision and blue eyes Daughter 3: (XaXa,Bb) color blindness and brown eyesDaughter 4: (XaXa,bb) color blindness and blue eyesFinal answer:
A heterozygous, brown-eyed, color-blind male can produce gametes with two possible combinations: XaB and XaB. If a blue-eyed mother with normal vision has a brown-eyed, color-blind son and a blue-eyed, color-blind daughter, the mother must be a carrier for color blindness, and the son and daughter inherited the recessive colorblind allele from their parents.
Explanation:
In humans, red-green color blindness is determined by an X-linked recessive allele (a), whereas eye color is determined by an autosomal gene. A heterozygous, brown-eyed, color-blind male can produce gametes with two possible combinations: XaB and XaB. The XaB gamete is color-blind and has brown eye color, while the XaB gamete is color-blind and has blue eye color.
If a blue-eyed mother with normal vision has a brown-eyed, color-blind son and a blue-eyed, color-blind daughter, the genotypes of both parents and children can be deduced. The mother must be a carrier for color blindness, with the genotype XaX. The son inherited the X chromosome with the recessive colorblind allele (Xa) from the mother, and the daughter inherited the X chromosome with the recessive colorblind allele (Xa) from the father.
Oxaloacetate uniformly labeled with 14C (i.e., with equal amounts of 14C in each of its carbon atoms) is condensed with unlabeled acetyl-CoA. After a single pass through the citric acid cycle back to oxaloacetate, what fraction of the original radioactivity will be found in the oxaloacetate?
Answer:
1/2
Explanation:
Which component is a protein fiber of the extracellular matrix?
Answer:
Protein collagen
Explanation:
Protein collagen is made up of a matrix of carbohydrate and proteins which comprises protein collagen as a major component of extracellular matrix. Protein collagen assembles itself into long fibrils known as collagen fibril which is very essential for providing strength and structural integrity to the tissue. Collagen fibers are woven with proteoglycans which is further connected to the long polysaccharide backbone. The matrix also comprises of some protein connectors such as integrins, fibronectin molecules etc. which establish connection among themselves or the other elements of the matrix
Huong has moved from China to the United States. While she dresses and acts like her American friends, she still has retained much of her cultural heritage and attends traditional Chinese dance classes on the weekends. This is an example of ___________.a. assimilation.
b. integration.
c. separation.
d. marginalization.
Answer:
b. Integration.
Explanation:
Huong acting and dressing as her American friends and attending traditional Chinese dance classes on the weekends is an example of integration because she is incorporating things from two different cultures to her life and living with them in harmony.
Sexual dysfunction is a phenomenon that
a. could result in a lack of sexual satisfaction.
b. is rare for partners in long-term relationships.
c. could occur to low sexual desire.
d. does not relate to sexual performance.
Answer:
a. could result in a lack of sexual satisfaction is the correct answer.
Explanation:
Sexual dysfunction is a phenomenon that could result in a lack of sexual satisfaction.
Normally sexual response cycle includes excitation, plateau, satisfaction, and resolution.
sexual dysfunction is more common at the of forty although it can also affect at any age.
Sexual dysfunction commonly is divided into four kinds:
Desire disorders — occur due to a reduction in sexual desire.Arousal disorders —in this case, a person does not get excited while doing sex.Orgasm disorders —is the inability of the woman to reach an orgasm. Pain disorders — while doing the intercourse pain occur.sexual dysfunction causes because of the following reason
heart diseaseif blood pressure is highdue to obesityDiabetesneurological disordersDiphtheria is caused by bacteria that have been infected by a bacteriophage. This bacteriophage is a lysogenic phage and contains the genes to produce the diphtheria toxin, which inhibits protein synthesis. Which of the following is the correct term for the phage while its genetic material is integrated into the bacterial chromosome?
a. The genetic material is called a viroid
b. The genetic material is called a prophage and the change in the host cell's properties is called lysogenic conversion
c. The genetic material is called a transposon and the change in the host cell's properties is called competence
d. The genetic material is called a prion
Answer:
The correct answer is b) The genetic material is called a prophage and the change in the host cell's properties is called lysogenic conversion
Explanation:
The term prophage is used to describe the genetic material of a bacteriophage which has been incorporated in the genome of infected bacteria. The resulting changes within the host´s properties are called lysogenic conversion. At this state the bacterial cell is still intact.
Mendel's law of segregation allows one to predict what can happen in a genetic cross. A Punnett square can be used to make this prediction. Look at the Punnett square below.
The use of Punnett square in Mendel’s law helps in predicting the phenotype and genotypes from genetic crosses of offspring.
Explanation:
The study of trait inheritance in pea plants is performed by Gregor Mendel. He developed a model of pair of genes that specify the traits. There are different alleles of genes in a population of living organisms. His law of segregation states that one of the two copies of gene that is present in a specific organism gets distributed to gametes produced by it.
The F2 generation of gene is represented by Punnett model and by counting the squares of this model the genotype and the phenotype ratio can be predicted.
Dr. Cho wants to know if differences in the growth rate of fish are based on genetics or the environment. He buys two fish. Fish 1 is fed everyday, while fish 2 is fed every other day. At the end of a month, fish 1 is nearly 15 percent larger than fish 2. Considering the fish have a nearly identical genetic makeup, what can Dr. Cho conclude?A) Environmental changes can account for all the differences in growth rate.B) Genetic influences must account for a majority of the differences in growth rate.C) Environmental conditions were more favorable for fish 2.D) Differences in growth rate cannot be determined by his simple experiment.
Answer:
Option A
Explanation:
The difference in amount of food consumed is considered an environmental factor and it has an effect on the growth rate as seen in the question.
We know a lot more about animals and plants than Darwin did, and still, not a single case is known to me of a complex organ that could not have been formed by numerous successive, slight modifications. I do not believe that such a case will ever be found. If it is I shall cease to believe in Darwinism.
A) True
B) False
The given statement is True.
Explanation:
The Charles Darwin developed the theory called Darwinism theory of evolution. The theory states that all the species of the organisms arises and developed through the small, inherited variations in the organisms that increase the individual ability to complete the survive and reproduce.
The individual species are not having identical traits that are passed from the generation to generation. The offspring are born that can survive, only the survive of the completion for resources will reproduce; he describes how the species can change in shape and character through the selective breeding.
Four different phylogenetic trees of a group of salamanders have been proposed. Trees A and B each require 12 homoplasies, but tree A requires 14 synapomorphies and tree B requires 13 synapomorphies. Tree C requires 15 homoplasies and 13 synapomorphies. Finally, tree D requires 10 homoplasies and 15 synapomorphies. According to the principle of parsimony, which tree(s) is/are the most accurate? A) Tree A only B) Tree B only C) Tree C only D) Tree D only E) Both tree A and tree B
Answer:
The answer is letter D.
Explanation:
Tree D only . It is the only tree that is the most accurate.