Answer:
ammonium ... nitrites
Explanation:
All living organisms including plants require certain nutrients to sustain their growth. Plants get most of their nutrients from the soil that anchors them. However, some of these nutrients like nitrogen are found in a fixed state and needs to be converted to usable forms. Nitrogen is a key component of living cells as it is used to build certain structures e.g protein, DNA etc. in the cell.
Certain groups of bacteria called NITRIFYING BACTERIA which are capable of using energy from chemical compounds to form organic molecules. They are important aerobic microbes that play a significant role in Agriculture, as in the process of them obtaining nutrients, they help convert ammonium in the soil into nitrites (fixed nitrogen). Groups of nitrifying bacteria that perform this initial task include: Nitrosomonas, Nitrosococcus etc. Other nitrifying bacteria from another genus-Nitrobacter, converts the nitrite into the most usable form by plants (nitrates).
There is a population of beetles that typically have black wings. A scientist studying these beetles knows that their eggs hatch in early spring, the young insects grow through the late spring and summer, they lay eggs in the early fall, and they die in the early winter. Recently some beetles have been born with white wings. Early in life, the black- and white-winged beetles seem to be very similar in number of mating events, eggs laid, and survival rates, but shortly after laying their eggs the white beetles die and there are only black-winged beetles during the late fall. What is a true statement about the beetles?
Answer:
White-and black-winged beetles have equal fitness.
Explanation:
As both the white and black-winged beetles can successfully mate and lay eggs having equal survival rates, this shows that both the kinds of beetles have the same level of fitness in the environment.
The fitness of an organism depends on its ability to survive and reproduce. As the description in the question shows, both the beetles were able to survive and lay eggs in an equal manner. This shows that both the clack and the white-winged beetles have an equal level of fitness.
Phenylketonuria (PKU) is an autosomal recessive genetic disorder. The frequency of homozygotes with this disorder is 0.0001. What percentage of the population is heterozygous?
Answer: The percentage of heterozygous population is 99%
Explanation:
According to the Hardy-Weinberg Equilibrium equation, the homozygous recessive individuals are represented by the q^2 term
Thus, q^2 = 0.0001
q = √0.0001 = 0.01 or 1%
Now, to calculate the percentage of heterozygous individuals in the population: subtract percentage of homozygotes from 100%
i.e 100% - 1% = 99%
Therefore, the percentage of heterozygous population is 99%. Also, this means 1 out of 100 people in the population suffer from Phenylketonuria (PKU).
Final answer:
The percentage of the population that is heterozygous for Phenylketonuria (PKU), given a homozygote frequency of 0.0001, is 1.98%. This calculation is based on the Hardy-Weinberg principle.
Explanation:
The student has asked about the percentage of the population that is heterozygous for Phenylketonuria (PKU), given that the frequency of homozygotes with this disorder is 0.0001. To solve for the heterozygous frequency, we can use the Hardy-Weinberg principle. This principle states that p2 + 2pq + q2 = 1, where p and q represent the frequency of the dominant and recessive alleles, respectively. Given that q2 (homozygous recessive) equals 0.0001, we can calculate q as the square root of 0.0001, which is 0.01. Therefore, p (frequency of the dominant allele) equals 1 - 0.01 = 0.99. The frequency of heterozygotes (2pq) is then calculated as 2 * 0.99 * 0.01 = 0.0198 or 1.98% of the population.
This shows that 1.98% of the population is heterozygous for PKU. Such individuals carry one mutant allele for PKU but generally do not exhibit symptoms of the disorder. However, they can pass the allele to their offspring, contributing to the genetic diversity and the occurrence of the disorder in the population.
The statement "the ability to acquire and use knowledge, solve problems and reason in the abstract, and adapt to new situations in the environment" most closely relates to a description of:
A) learning style.
B) intelligence.
C) achievement.
D) field dependence/independence.
Final answer:
The described ability to adapt and reason abstractly is most closely related to intelligence, particularly fluid intelligence, which involves problem-solving and recognizing complex relationships.
Explanation:
The statement "the ability to acquire and use knowledge, solve problems and reason in the abstract, and adapt to new situations in the environment" most closely relates to a description of intelligence. Intelligence includes the capacity for logic, understanding, self-awareness, learning, emotional knowledge, reasoning, planning, creativity, critical thinking, and problem-solving. It is often associated with successful educational, occupational, economic, and social outcomes, and is more than just learning style, achievement, or field dependence/independence. Fluid intelligence, specifically, is characterized by the ability to see complex relationships and solve problems, rather than merely recalling information or creating new products.
an electrical connection between an electrical circuit or equioment and the earth is called? load-ground-neutral
Answer:
the correct answer is Ground
Explanation:
Grounding is the process of immediate discharge of the electrical current directly to the earth with the use of low resistance electrical wire. grounding is used in order to prevent electrical shock in case of failure of the insulation of electrical appliances. it helps to keep prevent the damages caused by sudden change in voltage in electrical appliances. Grounding is also used to prevent electrical lighting in tall buildings by the use of arrestors placed at highest point of buildings.Final answer:
An electrical connection to the earth in a circuit or equipment is known as an earth/ground connection. It ensures safety by providing a low-resistance path to the earth and consists of three main types: the neutral wire grounding, the case grounding via the green earth/ground wire, and an alternative path through an earth spike.
Explanation:
An electrical connection between an electrical circuit or equipment and the earth is called earth/ground. This earth/ground connection provides a low-resistance path directly to the earth, which is vital for safety and circuit functionality. There are typically three types of earth/ground connections in electrical systems:
The first connection is via the neutral wire, which is connected to the earth at the power source and at the user's location, ensuring that the neutral wire remains at zero volts relative to the earth.The second type is the connection to the case of the appliance through the green earth/ground wire, which guarantees that the appliance's case remains at zero volts.The third type supplies an alternative path through the earth for completing the circuit – this could be an additional earth spike at the building's location.The live or hot wire, referred to as "live/hot", provides the voltage and current to operate the appliance, while the neutral wire acts as the return path for the current. A three-prong plug typically represents this three-wire system in a pictorial version, safely bringing electricity to an appliance.
You are testing 3 new herbicides, A, B, and C, to control itch grass and to compare the effectiveness of the herbicides with a currently used herbicide, Round-Up, and the treatment with just water. Which of the following is considered as a positive control?
Answer:
Round-Up
Explanation:
In one experiment the positive controls are used in order to validate the evaluation of the test, which is done in this case to measure the effectiveness of the herbicides. The researchers previously found that the herbicide Round-up controls the herb and has a high effectiveness , making this positive positive control be compared with the experimental results. In a positive control we have the desired effect in this case the elimination of grass.
You take a human smooth muscle cell and block the release of calcium from the sarcoplasmic reticulum. What effect does that have on contraction of that smooth muscle cell, and why?
Answer:
Even after block the release of calcium from the sarcoplasmic reticulum ,the contraction still occurs.
The reason is that the calcium ions (Ca+2) can enter the cell directly through L-type voltage gated Calcium channels in the plasma membrane and bind to calmodulin ,forming calcium-calmodulin complex.
Explanation:
The contraction in smooth muscle is quiet different than that in the skeletal muscle. ( In the smooth muscles , calcium enters from outside as well alongwith the calcium coming from sarcoplasmic reticulum while in skeletal muscles , calcium comes only from the sarcoplasmic reticulum )
In the case of smooth muscle , the L-type voltage-gated calcium channels are located on the plasma membrane of smooth muscle cells. As these channels open , the calcium ions rush inside the smooth muscle cell and bind the calmodulin forming the calcium calmodulin complex. This complex then binds to the myosin light chain kinase enzyme and causes the phosphorylation of the myosin light chains resulting in the contraction.
When the release of the calcium is blocked from the sarcoplasmic reticulum then the contraction of the smooth muscle cells still continues and will not get stopped. Thus, option E is correct.
What are smooth muscle cells?The complete question is: You take a human smooth muscle cell and block the release of calcium from the sarcoplasmic reticulum. What effect does that have on the contraction of that smooth muscle cell, and why?
A. Contraction is completely blocked because calcium binding to troponin is required for contraction.
B. Contraction still occurs because Ca2+ can enter the cell directly through Ca2+ channels in the plasma membrane and bind to troponin.
C. Contraction is completely blocked because calcium binding to calmodulin is required for contraction.
D. Contraction still occurs because the contraction in smooth muscle is completely independent of Ca2+ levels.
E. Contraction still occurs because Ca2+ can enter the cell directly through Ca2+ channels in the plasma membrane and bind to calmodulin.
Smooth muscles are spindle-shaped muscles that have an elongated nucleus and are present in the organs like the liver, intestines, and the pancreas. The calcium ions enter the muscle cells directly through the L-type voltage-gated calcium channels.
The calcium from the outside of the cells enters the smooth muscles and binds with the calmodulin resulting in the calcium calmodulin complex. This further gets binds to the kinase enzyme and initiates the phosphorylation leading to the contraction.
Therefore, option E. the blocking of the calcium does not stop the contraction.
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The Punnett square below shows the results of a cross to produce F2
generation plants.
In the F2
generation, what percent of the offspring have white flowers?
Answer:
Your answer is 75%
Explanation:
We know that there is a 25% of purple flower... There is four squares, meaning each square is 25% each. White flowers are "W" and purple is "w". There is a 75% of white flowers.
Final answer:
In Mendelian genetics, crossing two F1 hybrid plants (Bb) predicts that 25% of the F2 generation offspring will have white flowers, due to the recessive white flower trait reappearing in a 3:1 ratio of dominant to recessive phenotypes.
Explanation:
In the F2 generation resulting from a cross of two F1 hybrid plants, we can expect 25% of the offspring to have white flowers. This prediction is based on the classic Mendelian genetics experiments conducted by Gregor Mendel. When plants heterozygous for the flower color trait (represented as Bb) are crossed, the resulting Punnett square would showcase a 3:1 ratio of the dominant (purple) to recessive (white) phenotype. Here, we see that predictions indicate that there will be three offspring with the purple-flower phenotype (BB or Bb) for every one offspring with the white-flower phenotype (bb).
The Golgi complex functions to:______
A) modify and secrete proteins to the external environment.
B) sort proteins used within the cell.
C) both modify and sort proteins into those destined for secretion and those that function in membrane structures.
D) synthesize proteins.
Answer:
C) both modify and sort proteins into those destined for secretion and those that function in membrane structures.
Explanation:
Golgi apparatus is a single membrane-bound structure that is composed of the membrane-bound flattened sac which is called cisternae.
Golgi apparatus is the side of protein sorting, modification, and packaging. The protein which is made in the endoplasmic reticulum enters into Golgi where its modification like sulfation, glycosylation, etc takes place.
Then this protein is packed into vesicle and send to their destination like towards cell membrane, lysosome, etc. So the right answer is C.
Which region of your midbrain plays a role in arousing you to a state of alertness when, for example, in the dark of your apartment you accidentally stumble over your roommate who has passed out on the floor?
Answer:
The brainstem reticular formation( BRF) is not a different structure in the brain but is distributed throughout the core of the brainstem.
It is dessipiated from medulla into the midbrain. It plays a major role in the arousal and consciousness of the brain.
It also keep the body alert in conditions such as moving in dark, moving on stairs.
It also controls the movements and sensation and visceral functions.
Yellow pea color (A) is dominant to green pea color (a). Smooth pea texture (B) is dominant to wrinkled pea texture (b). If parent #1 is homozygous green and heterozygous smooth and parent #2 is homozygous yellow and homozygous wrinkled, what is the probability that the offspring will have yellow, smooth peas? Enter a number 0–100.
Answer:
50%
Explanation:
The genotype of the parent #1 who is homozygous green and heterozygous smooth would be= aaBb and that of the parent #2 who is homozygous yellow and homozygous wrinkled would be=AAbb. A cross between aaBb and AAbb would produce progeny in the following phenotype ratio=
1/2 yellow and smooth: 1/2 yellow and wrinkled.
Therefore, the probability that the offspring will have yellow, smooth peas is 1/2 or 50%
The video describes a coevolutionary arms race between the Plasmodium parasite and its human hosts.
True or false? One example of a coevolutionary arms race is when faster deer evolve and favor wolves and cougars that have stronger eyesight and senses of smell.
true
Archaeplastids, which include red and green algae and land plants, are thought to have descended from a heterotrophic protist that engulfed a(n) _____.
One example of a coevolutionary arms race is when faster deer evolve and favor wolves and cougars that have stronger eyesight and senses of smell is a true statement.
Archaeplastids, which include red and green algae and land plants, are thought to have descended from a heterotrophic protist that engulfed a cyanobacterium.
Explanation:
Co-evolution leads to two species influencing the adaptations of each other over time. Co-evolutionary arms race evolves reciprocal adaptation between species are repeated cyclically.
Since the preys like the deer are faster, the predators have to be extra skillful to be better hunters. Hence, the predators like the wolves and cougar need to adapt themselves with better eyesight and sense of smell.
Archeaplastids are supergroups of eukaryotes. As per evolutionary lines, arecheaplastids were created due to endosymbiotic relationship between an eukaryotic cell and a cynabacterium which resulted in eukaryote engulfing the cyanobacterium.
Natural selection favors copper tolerance in all soils near the old mine, not only in the contaminated soils. Nearly 100% of monkey flowers growing in copper-contaminated soil are copper tolerant. Copper contamination in the soil created copper-tolerant plants.
1. If you were to test monkey flowers growing on the shore of the lake, you would expect nearly 100% of them to be copper tolerant.
2. Copper-tolerant plants are found only in contaminated soils.
3. The population that existed before mining must have included both copper-tolerant and copper-intolerant plants.
Answer:
The population that existed before mining must have included both copper tolerant and copper intolerant
Explanation:
Natural selection is a form of evolution where individuals having a certain variation gives them an advantage at survival and reproduction compared to the ones that do not have the variation.
For natural selection to occur, the variation should initially be present in the population.
Therefore, for this population of Monkey flowers growing in a copper -contaminated soil. The population must have included both the copper tolerant and the copper intolerant plants before mining.
The subject question, rooted in Biology, addresses the concept of copper tolerance in monkey flowers affected by mining activities. It concerns evolutionary biology and ecology, with a focus on how plant populations adapt to soil with varying copper concentrations. The idea of natural selection and the genetic diversity of populations prior to mining are central themes.
The question given is related to evolution and ecology, two major areas within the subject of Biology. The scenario described involves copper tolerance in monkey flowers growing near an old mine. Because of natural selection, plants develop resistance to contaminants like toxic metals, but this resistance might come with decreased adaptability to uncontaminated soils. The process of disruptive selection leads to the divergence of plant populations based on their resistance to certain environmental factors, such as copper concentration in the soil.
The answers to the statements posed in the question are as follows:
It is possible, but not certain, that nearly 100% of monkey flowers growing on the shore of the lake would be copper tolerant, as copper contamination could spread to various areas, but other factors such as seed dispersal mechanisms and the history of contamination exposure play significant roles.Copper-tolerant plants are not found only in contaminated soils, as there can be gene flow between populations, but they are likely more common in areas where copper tolerance provides a survival advantage.The original population of plants before mining began likely contained genetic variation, including both copper-tolerant and non-tolerant individuals, as variation is essential for natural selection to occur.Micronutrients like copper are necessary for plant growth but can be toxic in high concentrations. Natural phenomena and human activities can change the content and distribution of these nutrients. In response, plants may undergo evolutionary adaptations, developing mechanisms to thrive in altered environments. A study of willows in contaminated soils revealed the importance of the soil-associated microbiome in plant health and disease resistance.
In Lewis Carroll's Through the Looking-Glass, the Red Queen tells Alice, "in this place it takes all the running you can do to stay in the same place." How is this statement logically connected with the idea of evolution by natural selection?
A. As individuals evolve to better fit their environment, their environment also changes, subjecting the individuals to continually changing selective pressures.
B. Running in place is an important measure of optimal running speed, which is a strong correlate of survival and reproduction.
C. As populations evolve to become better adapted to their environments, their environments also change, subjecting the populations to continually changing selective pressures.
D. As individuals evolve through natural selection, they tend to develop characteristics that cause them to be less adapted to their environment.
E. As individuals evolve through natural selection, they tend to move to new places that are very similar to the places in which they originally evolved.
Answer:
Option A, As individuals evolve to better fit their environment, their environment also changes, subjecting the individuals to continually changing selective pressures.
Explanation:
By running the author means that an organism has to continuously evolve in order to cope up with the changing environmental conditions and hence survive and be fertile.
As per the theory of natural selection, an individual that is best fit to the prevailing environmental condition is able to survive and reproduce. And in order to be fit, an organism is required to evolve continuously.
Hence, option A is correct
The Red Queen's statement from "Through the Looking-Glass" relates to the Red Queen Hypothesis in evolution, emphasizing the constant adaptation required just to maintain a species' current status amidst changing environmental and competitive pressures, best exemplified in option C.
Explanation:In Lewis Carroll's Through the Looking-Glass, the Red Queen's statement, "in this place it takes all the running you can do to stay in the same place," logically connects with the idea of evolution by natural selection through the concept known as the Red Queen Hypothesis. This hypothesis suggests that organisms are constantly adapting and evolving not merely to gain an advantage, but to maintain their current status relative to the changing environment and the evolving species within it. This includes interactions between competing species, predators and prey, parasites and hosts.
The most accurate connection to this concept is seen in option C: As populations evolve to become better adapted to their environments, their environments also change, subjecting the populations to continually changing selective pressures. This encompasses the idea that adaptation is not only about improvement in a static context but is also about maintaining relative fitness in a constantly evolving ecological landscape.
Therefore, the Red Queen's phrase embodies the perpetual arms race in nature, where species must continuously evolve simply to maintain their place in the ecosystem, facing new challenges and adapting to changes, which may include competitors, predators, or environmental shifts.
Understanding the structural and molecular interactions that induce shape and function for a protein has been an obstacle for some of your students. You decide to plan a lesson to introduce them to the basic amino acid structure and then use that concept to introduce the different levels of protein structure. To reinforce your lesson on amino acids, you need to aid the students in understanding that most naturally occurring amino acids have a shared base structure. Each amino acid has an amine group, an alpha-carbon (or central carbon), an R-side group, and a carboxyl group. The R-side group is what gives each amino acid its distinctive characteristics--for example, whether the amino acid will be acidic or basic, hydrophilic or hydrophobic, or charged.
Answer:
Option D
Explanation:
Complete question -
Choose the statement that does NOT pertain to amino acids.
a. The groups composing an amino acid are located around a central alpha-carbon.
b. All amino acids must contain a nitrogen-based molecule and a carboxylic acid.
c. The R-side group will determine the overall chemical properties of an individual amino acid.
d. Amino acids always contain a sulfur atom in their R-side group.
Solution
The side chain molecules that are attached to carboxylic acid group and amine group attached to the alpha carbon atom of the amino acid structure. These side chain molecules are called as R group. R group compounds are of diverse nature, characteristics and structure. They can be of varied shapes, sizes, charges and chemical reactivities. Some of these R group are soluble in water and some are not. Thus, it is not necessary that amino acids always contain a sulfur atom in their R-side group
Option D is correct
A bacterium was grown in two test tubes filled with media rich in glucose. One tube was sealed to produce anaerobic conditions, and the other was not. A third uninoculated, unsealed tube was used as a control. Glucose utilization by this bacterium causes acid production, which is indicated by a lightening of the media color. If the bacterium is able to produce ATP only by aerobic respiration, we expect lightening of media in ________.a. lightening of media in the sealed tube only b. lightening of media in the unsealed tube only c. lightening of media in the sealed and unsealed tubes only d. lightening of media in the control tube only
Answer:
The correct answer is: b. lightening of media in the unsealed tube only.
Explanation:
According to the question, the bacteria can undergo only aerobic respiration, that is it can produce its energy, that is, ATP, or adenosine triphosphate, only in the presence of oxygen.The unsealed tube allowed air or oxygen to pass into it which can be used by the bacteria for its respiration. In the process, it will produce acid that will cause the media colour to lighten.The sealed tube do not allow any oxygen to pass into it. As the given bacteria can undergo only aerobic respiration but not anaerobic respiration, in absence of oxygen it will not be able to undergo respiration and produce energy and acid. Hence, the media colour will remain unchanged.The control tube is used to check the sterility of the media.Final answer:
Lightening of media due to glucose utilization by aerobic respiration is expected in the unsealed test tube only, which allows for the presence of oxygen necessary for the bacterium that relies strictly on aerobic processes. (option b)
Explanation:
If the bacterium is able to produce ATP only by aerobic respiration, then we would expect lightening of the media, which indicates acid production due to glucose utilization, only in the unsealed test tube where oxygen is available.
Oxygen is a requirement for aerobic respiration, and in the sealed test tube, anaerobic conditions are present, which would not support the growth of a bacterium that relies strictly on aerobic processes. Therefore, the correct answer is that we expect lightening of media in the unsealed tube only.
Three lab groups carried out an experiment to identify the correct molarities for five solutions. Each unknown contained one of the following sucrose concentrations: 0.0 M, 0.2 M, 0.4 M, 0.6 M, 0.8 M, and 1.0 M. Each data entry represents the average of 3 sample replications of 1 cm3 sweet potato cubes expressed as percent change in mass after an overnight (24 hr) soak in the unknown solutions. From the data given, which statement most accurately describes what is occurring in response to a particular unknown solution.
A) Unknown solution E contains the highest concentration of sucrose and the change in mass is due to the active transport of sucrose into the cell in exchange for water molecules.
B) Osmosis of water molecules from unknown solution A likely caused the increase in mass observed.
C) Passive transport of sucrose out of the potato cells explains the change in mass observed for unknown solution F.
D) Unknown solution C represents a sucrose molarity slightly lower than the molarity of sweet potato cells, thus water is transported out of the cells.
Answer:
Osmosis of water molecules from unknown solution A likely caused the increase in mass observed.
Explanation:
Osmosis can be described as a process in which water molecules move from a region of higher concentration to a region of lower concentration along a concentration gradient. So this process does not require energy.
As we observed that there was an increase in the mass of the sweet potato, we can infer that this increase in mass occurred due to osmosis as the concentration of water was more outside the cell as compared to inside of the cell.
The correct statement is B) Osmosis of water molecules from unknown solution A likely caused the increase in mass observed.
Explanation:The correct statement that describes what is occurring in response to a particular unknown solution is B) Osmosis of water molecules from unknown solution A likely caused the increase in mass observed.
Osmosis is the movement of water molecules from an area of lower solute concentration to an area of higher solute concentration through a semi-permeable membrane. In this case, the unknown solution A likely had a lower sucrose concentration compared to the sweet potato cells, causing water to move into the cells and resulting in an increase in mass.
This conclusion can be drawn because osmosis occurs when there is a difference in solute concentrations on either side of a semi-permeable membrane, and water moves to equalize the concentration.
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From a throat culture, you have isolated gram-positive cocci that you cannot identify as staphylococci or streptococci. A test for one enzyme can be used to distinguish between these bacteria quickly. What is that enzyme?
Answer:
Catalase
Explanation:
Catalase test is used to detect the presence of enzyme catalase.
Catalase is an enzyme that is formed by microorganism that lives in oxygen saturated environments so that there will be the break down of any toxic that comes with oxygen and hydrogen peroxide. This enzymes helps to differentiate catalase producing enzymes like staphylococci from bacteria that produce non-catalase like streptococci
The treelike fibers that receive information and send it toward the neuron's cell body are called ____
Answer:
The treelike fibers that receive information and send it toward the neuron's cell body are called Dendrite
Explanation:
Dendrite:- They are tree like projections generally the extension of nerve cell which helps in the transmission of nerve impulses or electrochemical stimulation from one neuron to another. It is also known as dendrons. For neurons to become active they need some action potential, these action potentials are received in the form of nerve impulses or electrochemical stimulation by dendrite and is been stored in the cell body, or soma, of the neuron. Dendrites are covered by synapses (Structure that permit neural transmission).
A 14-year-old boy describes himself as feeling "down" all of the time for the past year. He remembers feeling better while he was at camp for 4 weeks during the summer; however, the depressed mood returned when he came home. He reports poor concentration, feelings of hopelessness, and low self-esteem but denies suicidal ideation or changes in his appetite or sleep. What is the most likely diagnosis?
The question is incomplete as it does not have the option which are:
1. Major depressive disorder
2. Disruptive mood dysregulation disorder
3. depressive disorder with short duration hypomania
4. Dysthymia
5. Schizoaffective disorder
Answer:
4. Dysthymia
Explanation:
Dysthymia or persistent depressive disorder is a long term depression disorder or mood which leads to the symptoms of depression like a sad mood which directly affects the social life like in school or at home or work.
The person with dysthymia feel low-self esteem, inadequate and lose interest in normal activities and the symptoms may last for a year but the symptoms continuously do not last for more than two months.
In the given question, the boy feels that he feels down, depressed mood, hopelessness which are the symptoms of the dysthymia in the early stages.
Thus, Option-4 is the correct answer.
Two animals are considered members of different species if they __________.
a. look different
b. cannot mate and produce viable, fertile offspring
c. live in different habitats are geographically
d. isolated are members of different populations
Answer:
The correct answer is b. cannot mate and produce viable, fertile offspring
Explanation:
According to the biological species concept, the population of organisms that interbreed with each other and produce viable and fertile offspring is considered as a species.
This means the member of species can interbreed with each other which results in viable and reproductively healthy offspring. So if two animals are not able to mate and produce viable and fertile offspring than those animals are not considered as the same species. Therefore the correct answer is b.
Final answer:
Animals belong to different species if they cannot mate and produce viable, fertile offspring, according to the biological species concept, which prioritizes reproductive isolation over physical or habitat differences.
Explanation:
Two animals are considered members of different species if they cannot mate and produce viable, fertile offspring. The biological species concept defines a species as a group of individuals that actually or potentially interbreed in nature. Thus, if two animals do not interbreed in nature, or if they do but their offspring are sterile or do not survive (are not viable), they are considered different species. This definition emphasizes reproductive isolation as the primary criterion for species distinctions and does not rely solely on physical appearance or habitat differences, although these can be indicators of species separations as well.
An increase in the concentration of enzyme will increase the reaction rate. An increase in the concentration of enzyme will increase the reaction rate. True False
Answer:
TRUEExplanation:
Normally , substrates bind to the active site of the enzyme and catalyzes the reaction.
If there is sufficient amount of enzyme present, the reaction rate increases, because additional active sites could speed up the reaction. As the amount of enzyme is increased , the rate of reaction increases.
If there is insufficient amount of enzyme present , The reaction rate increases , but not so fast as it otherwise would.
Hence the statement an increase in the concentration of enzyme will increase the reaction rate is true.
While conducting experiments with E. coli, Meselson and Stahl established that during DNA replication, each of the two strands that
compose the double helix were used as a template for the new strands of DNA. The scientists described the replication method as
semi-conservative. Explain what this means in terms of DNA replication
Answer:
C
Explanation:
Base pairing would result in two double-stranded DNA molecules that would include one parental or old strand and one daughter or new strand.
The term 'semi-conservative' in DNA replication refers to the creation of new DNA molecules having one original strand and one new strand, hence conserving half of the original DNA molecule.
Explanation:Meselson and Stahl's experiments with E. coli established the semi-conservative model of DNA replication. According to this model, each of the two strands in the DNA double helix acts as a template for a new strand. After replication, each DNA molecule consists of one original (or parent) strand and one newly synthesized strand. This process ensures that the new molecules are identical copies of the original DNA molecule. The term 'semi-conservative' is used because half of the original DNA molecule is conserved in every new DNA molecule.
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Among plants known as legumes (beans, peas, alfalfa, clover, ete.) the seeds are contained in a fruit that is itself called a legume, better known as a pod. Upon opening such pods, it is commonly observed that some ovules have become mature seeds, whereas other ovules have not. Thus, which of the following statements is (are) true? 1. The flowers that gave rise to such pods were not pollinated 2. Pollen tubes did not enter all of the ovules in such pods. 3. There was apparently not enough endosperm to distribute to all of the ovules in such pods. 4. The ovules that failed to develop into seeds were derived from sterile floral parts. 5. Fruit can develop, even if all ovules within have not been fertilized A) 1 only B) 1 and 5 C) 2 and 4 D) 2 and 5 2. Gymnosperms differ from both extinct and extant (living) ferns because they A) are woody B) have macrophylls. C) have pollen. D) have sporophylls.
Answer:
1. Pollen tubes did not enter all of the ovules in such pods
2.C) have pollen
Explanation:
1. When the ovules are not fertilized by pollen, they do not become seeds and remain immature ovules as with legumes.The flower of the legumes has several ovules, the pollen tube is the one that opens the way for the fertilization of each ovule.
2. Gimnosperms reproduce by pollen that is transported mainly by the wind and fertilizes the ovule to give rise to a bare seed, Unlike ferns that reproduce by spores that are found in soros under their leaves and are characterized by having alternation of generations.
Which of the following best describes a biodiversity "hotspot"? Question 18 options:
A hotspot is an area near volcanic vents on the ocean floor where the species diversity is high.
A hotspot is an area where the rate of species extinction is high.
A hotspot is a region where species diversity is high but threatened by habitat loss.
A hotspot is a region where large numbers of animals are brought together into an enclosure.
Answer:
Which of the following best describes a biodiversity "hotspot"?
Biodiversity hotspot is a region where large numbers of animals are brought together into an enclosure
Explanation:
When we are talking about biodiversity hotspot, it entails a concentrated region where living organisms are brought together. It is most times an enclosure that encompasses so many living organism
Josiah says this is a phylogenetic tree of the dinosaurs. Maleek says it is a cladogram of the dinosaurs. Who is correct? Josiah is correct. Maleek is correct. Both are correct. Neither is correct.
Answer:
both are correct
Explanation:
Both Josiah and Maleek are right because a cladogram is a diagram that represents a particular class of phylogenetic trees.
What is a cladogram?A cladogram is a diagram that may be used to represent evolutionary relationships between groups of organisms or taxonomic groups.
In this case, dinosaurs represent a particular taxonomic group (reptiles) whose evolution can be schematized by a cladogram or phylogenetic tree.The phylogenetic trees are based on different types of evidence including, among others, molecular evidence (DNA sequences) and morphological datasets.In conclusion, both Josiah and Maleek are right because a cladogram is a diagram that represents a particular class of phylogenetic trees.
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The initial statement of the ____________ hypothesis proposed that over time a bacterial endosymbiont of an ancestral cell in the eukaryotic lineage lost its ability to live independently.
Answer: Endosymbiotic
Explanation:
The initial statement of the endosymbiont states that over a period of time the bacterial endosymbiont of the ancestral cell in the eukaryotic lineage loss the ability to live independently.
They can either become a chloroplast if the endosymbiont bacteria is photosynthetic or it can become a mitochondria if bacteria uses aerobic respiration.
hence, the correct answer is endosymbiotic.
Continuous with the outer portion of the nuclear pore, what membrane-bound structure functionsin the synthesis of secretory proteins, integral membrane proteins, or proteins bound for other organelles?
A) rough endoplasmic reticulum
B) lysosome
C) nucleolus
D) mitochondria
E) smooth endoplasmic
Answer:
Option A. Rough endoplasmic reticulum
Explanation:
Rough endoplasmic reticulum functions in the synthesis of secretory proteins, integral membrane proteins, or proteins bound for other organelles. Rough endoplasmic reticulum is named for its rough appearance, which is due to the ribosomes attached to its outer (cytoplasmic) surface. The ribosomes on rough endoplasmic reticulum specialize in the synthesis of proteins that possess a signal sequence that directs them specifically to the endoplasmic reticulum for processing.
What type of interaction between two chemicals causes one chemical that is not toxic to become more toxic?
Answer:
Potentiating effects
Explanation:
In medical field, Potentiating refers to the enhancement of potency or effect of any drug, chemical or treatment method.
In case of chemicals, potentiating effects are caused when one drug or chemical comes in contact with another drug and chemical and their combined pharmacologic effect is higher than the combined or individual response of each drug. For example – Pharmacologic effect of alcohol and sedative and diazepam potentiate the effect of alcohol.
The lumper potatoes that were grown in Ireland during the 1800s were essentially clones of one another. They all had the same genetic makeup. So, when a potato blight disease began infecting the potatoes, it spread to all potatoes equally. How could greater genetic diversity have lessened the devastation of the potato blight? A. Some potatoes would be more likely to have a genetic resistance to the disease and survive. B. The potatoes would have been able to trade genes so that they could survive the disease. C. More of the potatoes would have been edible varieties. D. None of the potatoes would have been infected by the disease.
Answer:
some potatoes would be more likely to have genetic resistance to the disease and survive.
Greater genetic diversity could have lessened the devastation of the potato blight by allowing some potatoes to have genetic resistance to the disease and survive.
Explanation:Greater genetic diversity could have lessened the devastation of the potato blight in several ways:
A. Some potatoes would be more likely to have a genetic resistance to the disease and survive.B. The potatoes would have been able to trade genes so that they could survive the disease.By having a greater genetic diversity, there would be a higher chance of some potatoes having natural resistance to the disease, and they could pass on their resistance to future generations through gene exchange.
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Starting from the wild mustard Brassica oleracea, breeders have created the strains known as Brussels sprouts, broccoli, kale, and cabbage. Therefore, which of the following statements is correct?
A) In this wild mustard, there is enough heritable variation to permit these different varieties.
B) Heritable variation is low in wild mustard—otherwise this wild strain would have different characteristics.
C) Natural selection is rare in wild populations of wild mustard.
D) In wild mustard, most of the variation is due to differences in soil or other aspects of the environment.
Answer:
A) In this wild mustard, there is enough heritable variation to permit these different varieties.
Explanation:
Brussels sprouts, broccoli, kale, and cabbage were developed by breeders by the process of artificial selection of one or other genetic traits. The processes of natural and artificial selection require the presence of genetic variations in the population to act upon. Brassica oleracea had the variations such as overlapping leaves (for cabbage), storage stem (for kohlrabi), large axillary buds (for Brussels), etc. These strains of Brassica with desired genetic traits were selected and bred for several generations to produce the above-mentioned strains.
Among the options given, the correct one is 'In wild mustard, there is sufficient heritable variation to allow for the creation of different varieties such as Brussels sprouts, broccoli, kale, and cabbage.' This is possible due to the high genetic variability in wild mustard, which enables selective breeding.
Explanation:The correct statement amongst the given options is 'A) In this wild mustard, there is enough heritable variation to permit these different varieties.' This is because, through the process of selective breeding, breeders have been able to isolate and enhance certain traits in wild mustard (Brassica oleracea) leading to the creation of different strains like Brussels sprouts, broccoli, kale, and cabbage. This would not be possible if heritable variation was low in this plant. Therefore, this plant must have a high genetic variability which allows breeders to selectively breed for specific traits, leading to the development of these cultivars.
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