What is the result of meiosis II?

two diploid daughter cells
four haploid daughter cells
two haploid daughter cells
four diploid daughter cells

Answers

Answer 1
I think two haploid daughter cells
Answer 2

Answer: Option B

Explanation:

In some species there is a very small interphase, or interkinesis before the cell enters in the the process of meiosis II.

The two daughter cells that are produced after meiosis I go though the process of meiosis II. During the process of meiosis II the two sister chromatids which lies in daughter cells separate, resulting in formation of four haploid daughter cells. This process is similar to mitosis.


Related Questions

A researcher wishes to stop an enzyme reaction in a cell because the products can become toxic. speculate on an approach that the researcher might use to stop the reaction. be sure to describe how this approach would work and identify any pros or cons it might have to the organism.

Answers

One apprach would be to use substrate concentration. The higher the substrate concentration, the higher the velocity bc more enzymes can bind eventually all enzymes are saturated, and rech a plateau point.

The skin has approximately how many nerve endings for temperature

Answers

The skin has about 200 000 nerve endings that detect temperature.
This nerve endings are also called thermoreceptors and have ion channels that respond to particular temperatures, while other free nerve endings generate action potentials in response to pain.

Identify which division had the largest sample size

Answers

Attached is the table related to this exercise that I found on the internet.

According to the table, the division with the largest sample was the division II.
Summing up all the individuals from the different divisions we have:
Division I - 22
Division II - 27
Division III - 21
The sample from division II is the largest.

Without comparative sizes for each division, one can infer from the given information that the division with a sample size of 1,000 students could be the largest. The determination is based on comparing mentioned sample sizes, such as the hypothetical regional splits or the setup of an experiment with only 24 participants.

To identify which division had the largest sample size, one would need to compare the number of elements, or data points, in each division or group. In the context of the information provided, the largest sample size could refer to the largest group of individuals or responses studied in a research context or from a data set. For instance, if we assess that a random sample of 1,000 students from the eastern United States resulted in the data in Table 11.13, and compare this number to other samples or sub-samples mentioned, we would determine that the sample size of 1,000 students is potentially the largest among those discussed. However, to definitively answer which division had the largest sample size, all mentioned sample sizes would need to be compared directly.

The provided text also discusses various aspects of statistical analysis and sample sizes, such as the law of large numbers, randomized controlled trials, stratified random samples, and sub-samples. These terms are important when considering the sample size necessary to achieve statistically significant results and the representation of a population in a study.

Suppose you could selectively prevent production of a-amylase or oligo-1,6-glucosidase in an organism that normally hydrolyzes starch. which enzyme would the organism miss the most

Answers

The enzyme the organism will miss most is ALPHA AMYLASE.
This is because, alpha amylase is the enzyme that is responsible for hydrolyzing alpha bond of starch in order to break it down to maltose. Oligo 1,6 glucosidase on the other hand is only able to hydrolyses alpha 1,6 glucosidic bond, which is just a step in the conversion of a polysacharride to smaller sugars. 

Answer:

The correct answer would be alpha amylase.

Alpha enzyme is an enzyme that catalyzes the break down of alpha linkage present in polysaccharides such as starch, glycogen et cetera.

The help in breaking down complex polysaccharides into simpler units which can be easily absorbed by the body.

For example, alpha amylase is present in the form of salivary amylase and pancreatic amylase in humans. They breakdown the starch into smaller units such as maltose and dextrin.

In contrast, oligo-1,6-glucosidase is an enzyme that catalyzes the breakdown of alpha 1-6 linkage in some oligsaccharides.

Thus, the organism would miss alpha amylase more as compared to  oligo-1,6-glucosidase.

HI! I've been stuck on this for so long i really need your help!! 30 Points!!
1. What factors can shift this condition requiring feedback and homeostatic processes?
2. Identify the organ systems that are involved in the homeostatic processes.
3. What kind of feedback, positive or negative, is used to maintain the homeostasis?
4. For the feedback loop, identify the stimulus, receptor, integrating center, effector, and response.
5. Identify any other strategies, such as drug therapies, exercise etc., can be used to help maintain balance in this condition.

Answers

Answer:

Explanation:he receptor

2. Circulatory System, Lymphatic System, Nervous System, Endocrine System, Respiratory System, Digestive System, Urinary System

3. Both

4. Homeostatic control mechanisms have at least three interdependent components: a receptor, integrating center, and  effector.The receptor senses environmental stimuli, sending the information to the integrating center.The integrating center, generally a region of the brain called the hypothalamus, signals an effector (e.g. muscles or an organ ) to respond to the stimuli.Positive feedback enhances or accelerates output created by an activated stimulus. Platelet aggregation and accumulation in response to injury is an example of positive feedback. Negative feedback brings a system back to its level of normal functioning. Adjustments of blood pressure, metabolism, and body temperature are all negative feedback.

5. healthy eating, walking and having stabilized emoti PLS PLS GIVE ME THE BRAINLIST PLS PLS!

Circulatory System, Lymphatic System, Nervous System, Endocrine System, Respiratory System, Digestive System, Urinary System.

What is circulatory system?

Blood arteries in the circulatory system move blood away from and toward the heart. Blood leaves the heart through arteries and returns through veins. Cells receive oxygen, nutrition, and hormones through the circulatory system, which also eliminates wastes like carbon dioxide.

By eliminating any fluids that leak out of our blood vessels, it keeps the fluid balance in our bodily tissues. For both our innate immunity and acquired immunity to work as best they can, the lymphatic system is crucial.

The lymph nodes keep track of the lymph that enters them and develop cells and antibodies that guard our bodies against illness and infection.

Therefore, Circulatory System, Lymphatic System, Nervous System, Endocrine System, Respiratory System, Digestive System, Urinary System.

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are the 4 basins of the ocean, pacific, indian, atlantic, and arctic connected or not connected?

Answers

they are all connected
Final answer:

The four basins of the ocean are connected to varying degrees.

Explanation:

The four basins of the ocean - Pacific, Indian, Atlantic, and Arctic - are connected to each other to some extent.

The Pacific Ocean connects to both the Atlantic Ocean and the Arctic Ocean. It is the largest and deepest ocean on Earth. The Indian Ocean is connected to the Atlantic Ocean via the Southern Ocean, which surrounds Antarctica. The Atlantic Ocean itself is connected to the Arctic Ocean through the Norwegian Sea and the Greenland Sea.

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The Earth's lithosphere is broken up into a bunch of discrete pieces, called ________ that move around the surface of the planet.
a.plates
b.faults
c.rifts
d.boundries

Answers

Correct answer: A). Plates

The tectonic plates are the pieces of earth's crust and mantle, which is together referred to as the lithosphere. The lithosphere is a rigid outermost layer of the planet that is broken down into the tectonic plates.

The plates move because the earth's lithosphere has a higher strength than the asthenosphere. During an earthquake, the plates move over each other.  

Hence, the correct answer would be option A.



The Earth's lithosphere is broken up into a bunch of discrete pieces, called plates that move around the surface of the planet. Therefore, option (A) is correct.

Tectonic plates form Earth's lithosphere. The semi-fluid asthenosphere supports these plates. At a few centimetres every year, they move constantly. Earth's mantle heat-driven convection currents cause this movement.

Geological phenomena occur at tectonic plate borders. Plates diverge, forming new crust and volcanoes. When plates contact, they produce convergent boundaries, causing subduction or mountain uplift. At transform boundaries, plates slide past each other, triggering earthquakes.

Plate tectonics formed continents, oceans, mountain ranges, and geological features on Earth. Plate tectonics is essential for analyzing earthquakes, volcanoes, and Earth's long-term geology. Therefore, option (A) is correct.

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A patient presents with low copper. which portion of cellular respiration would suffer?

Answers

Final answer:

Low copper levels can interfere with the electron transport system in cellular respiration, disrupting ATP production and processes meant to prevent cellular damage from dangerous oxygen radicals.

Explanation:

When a patient presents with low copper, the portion of cellular respiration that would suffer is the electron transport system. Copper is a fundamental part of cytochrome c oxidase, a critical enzyme used for transferring electrons to oxygen at the end of the electron transport chain. Without sufficient copper, the cell may lack an appropriate cytochrome oxidase, thus, inhibiting the flow of electrons to oxygen. This could diminish ATP production and disrupt the aerobic respiration process.

Furthermore, copper deficiency can cause the disruption of processes meant to minimize damaging effects of dangerous oxygen radicals produced during aerobic respiration, such as hydrogen peroxide (H₂O₂) or superoxide (O₂). This could potentially result in cellular damage.

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PLEASE HELP!!! ASAP

Imagine you placed a limestone with a surface area of 1,000 cm2 in a lush, tropical
environment. You also put a quartzite rock with a surface area of 100 cm2 in desert
climate at a high altitude that experiences various cycles of freezing and thawing
throughout the year. Which rock do you think would weather at the fastest rate?
Why?

Answers

the one with the the limestone thingy is faster  because the friction is loss  
my educational guess

Answer:

Limestone will be weathered faster than Quartzite

Explanation:

Limestone is a sedimentary rock that is formed from the collection of organic elements such as shells of organisms, along with other sediments. They are made up of calcium carbonate and these sediments are compacted and solidified and forms limestone over a specific period of time.

On the other hand, Quartzite is a metamorphic rock that forms when quartz rich sandstone undergoes metamorphism. They contain abundant quartz, which is a hard and resistant mineral.

Limestone is weathered at a much faster rate than Quartzite.

Limestone breaks down by chemical weathering process when rain water containing carbonic acid precipitates and falls over the surface of the rock. Whereas, quartzite is comprised of quartz that is comparatively dense, hard and resistant. So, they are affected at a much slower rate.

Which of the following is true about light absorption in plants? Choose all that apply . many different pigments are involved in light absorption
The green wavelength of light is the least important for plants
Chlorophyll molecules mostly absorb green wavelength of light
Pigments that absorb light are embedded on thylakoid membranes of chloroplasts

Answers

Chlorophyll molecules mostly absorb green wavelength of light 
Pigments that absorb light are embedded on thylakoid membranes of chloroplasts

Chlorophyll molecules mostly absorb the green wavelength of light  Pigments that absorb light are embedded on thylakoid membranes of chloroplasts

Option C is correct

Light absorption

Plants seize light energy and utilize it to produce sugars using a procedure called photosynthesis.

Light absorption is where it all begins during this operation, where pigments, that are locatedin the chloroplasts of plant cells entanglethese light particles

Therefore, Chlorophyll molecules mostly absorb the green wavelength of light  Pigments that enthralllight are embedded on thylakoid membranes of chloroplasts

Option C is correct

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how does sugar affect the surface tension of water?

Answers

The effect was interpreted as a depletion of the solute molecules at the water-air interface. ... Then, the surface tension increases above the surface tension of water (similar to sucrose solutions) for higher concentrations.

Answer:

by  reducing the surface tension of the water

Explanation:

The physical force  generated by the atoms present in the liquid molecules as a result of the pull exerted on each other and the surrouding atoms  compare to the water-air interphase is called the surface tension. This attraction is due to presence of hydrogen bonding between the water molecules.

Therefore the hydrogen bonding  is the force at the thin-surface of water surfaces  that sustain the water skater and a thin razor when  placed.

When sugar is added to water ,the solute concentration of the water increases. The hydration energy is generated from the  chemical  reactions between  sugar and water molecules. The hydration energy  lowers the H-bonding(reduces the surface tension). Hence sugar lowers the surface tension

If genes from an organism, such as a bacterium, are inserted into a cell of another organism, such as corn, why does the gene still function?

A) The organism receiving the gene will modify it so it can work.

B) The gene carries the necessary enzymes to allow it to be read in corn.

C) The genetic code is read in the same way by all organisms.

D) The bacterium is similar enough to the corn that the gene is able to function.

Answers

The Answer is A) The organism receiving the gene will modify it so it can work.
Hope this helps!
Have a great day mate!!

Answer: C). The genetic code read by the organism in the same way by all organisms.

Explanation:

The gene is the smallest functional unit of the genome of the organism which is expressed in the organism and it produces a particular trait in the organism.

The genetic engineering is a field which facilitates the manipulation of the genetic makeup of the organisms.

The function of gene will remain the same even though it is transfered from one organism to other. Every gene exhibit a genetic code which helps in expression of gene in an oderly way. Thus irrespective of the organism the order of expression of gene will be maintained by genetic code.

The addition of ________ influences a mineral's color.

Answers

Trace electrons influences it

Which element you are more likely to find as a free element rather than a compoung -lead or calcium?

Answers

LEAD is the correct answer but I have to keep dragging this answer on in order to submit it, so I think this is good now.

Through an increase in the generation of reactive oxygen species, lead has an impact on the endothelium's vasoactive function.

What is the function of lead in biological process?

Lead is known to cause serious health problems that may be irreversible once it enters the body. Lead has no recognized biological role in the body.

Nearly all the body's major organ systems, including the hematopoietic, renal, neurological, and cardiovascular systems, are affected.

Red blood cell synthesis is significantly impacted by lead. Seizures, comas, and even death have been linked to extremely high lead levels.

A kid may experience developmental delays, a lower IQ, hyperactivity, learning impairments, behavioral issues, decreased hearing, and stunted growth at lower levels of exposure.

Therefore, Lead (Pb) is a transition metal that is less reactive and extremely stable by itself.

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Why is it important that haploid gametes be produced in animals?

Answers

Final answer:

Haploid gametes are essential in sexual reproduction to ensure that the fertilized zygote has the correct diploid number of chromosomes, preserving genetic stability and facilitating genetic diversity.

Explanation:

The production of haploid gametes is a critical aspect of sexual reproduction in animals. This process ensures that when two gametes fuse during fertilization, the resulting zygote has the appropriate diploid number of chromosomes, with one set contributed by each parent. This restoration of the diploid state is essential to maintain the species-specific chromosome number across generations.

In the diploid-dominant life cycle of nearly all animals, germ cells are produced in the gonads and undergo meiosis to create haploid gametes. These gametes, once formed, cannot divide further, limiting them to a single, unicellular stage in the life cycle. Following fertilization, the diploid zygote develops through mitosis to become a multicellular offspring. This cycle not only maintains genetic stability by controlling chromosome numbers but also allows for genetic diversity, which is crucial for the evolution and survival of species.

Select all of the answers that apply.

The early atmosphere on Earth was _____.

mostly carbon dioxide
extremely cold
full of oxygen
hot

Answers

It can be A, C, and D 

The answer is A,C, and D btw

A series of steps in which organisms transfer energy by eating and being eaten

Answers

the answer is food chain

Without enzymes, what would happen to the rate of chemical reactions?

Answers

Enzymes are catalysts, which means that they make chemical reactions go faster, but are not changed by the reaction,
 Enzymes speed up reactions that would otherwise take place but at a much slower rate. So essentially, these reactions within the body would still occur but would take place so slowly that it probably wouldn't be sufficient to sustain life

A client who just has been diagnosed with primary open-angle glaucoma (poag) refuses therapy. the nurse reinforces that it is important for the client to seek treatment. which goal is the nurse trying to achieve?

Answers

The nurses main goal is to make sure the patient receives proper treatment. Proper treatment isn't always an easy decision but it is one that must be considered. Though the patient is not obligated to take any advice or recommendation given by any health care professional, the patient should still consider those options as nurses are certified to make those recommendations.

Why is cellular respiration and photosynthesis difficult to understand?

Answers

It is difficult because photosynthesis is what makes glucose which is used to with cellular respiration which to make the ATP so they are kinda similar. :)

Nurse is preparing a morbidly obese client for gastric bypass surgery. what should the nurse teach the client to do after surgery

Answers

eat smaller portions and make sure to clean the body properly as to make sure not to rupture stitches

There is a definite place at which the brain begins and the spinal cord ends

Answers

The answer is the spinal cord starts at the occipital bone where it passes over the foramen magnum, and encounters and go in the spinal canal at the start of the cervical vertebrae. The spinal cord encompasses down to amid the first and second lumbar vertebrae where the spinal cord ends.

The spinal cord begins at the base of the brain stem, extends down to the first lumbar vertebra in adults, and is divided into cervical, thoracic, lumbar, and sacral regions. It houses the central nervous system's pathways for sensory and motor information.

The spinal cord begins at the brain stem base and is a crucial part of the central nervous system, responsible for transmitting messages between the brain and the rest of the body. It does not run the full length of the vertebral column, contrary to common assumption. Instead, it terminates at the first lumbar vertebra in adults and is slightly longer in children, extending to the second lumbar vertebrae. The cervical region extends from C1 to C7, thoracic from T1 to T12, lumbar from L1 to L5, and sacral from S1 to S5.

The spinal cord is encased within the vertebral column and is divided according to the regions of the spine it corresponds with. The gray and white matter within the spinal cord have a reversed arrangement compared to the cerebral cortex, with gray matter inside and white matter outside. Dorsal nerves receive sensory information, while ventral nerves send motor signals to the body. The spinal cord and nerves support motor and sensory functions, with certain areas enervating the arms and legs.

Over time, as the body grows, the spinal cord lengthens more slowly compared to the spinal column, which results in a gap between the two lower down the vertebral column, leading to the cauda equina, a bundle of nerve roots at the lower end of the spinal cord.

As a microbiologist, you have been asked to advise a town council on the possible ways to remove pcb contaminants from the local groundwater. which microbial process is most likely to have bioremediation potential in this case?

Answers

PCB (Poly-Chlorinated Biphenyls) are the major contaminants of groundwater that must be removed before circulating water among people. PCBs can also enter the food chain by contaminating aquatic organisms. Working on PCBs and removing it from water is a challenging process. Various processes are involved in removal of these contaminants from the groundwater. Among these one is the use of microorganisms. Microbial process is a potent bioremediating method.

DEGRADATION OF PCBs through microorganisms is an effective process as PCBs are susceptible to degradation. PCBs are transformed into smaller parts by microorganisms that make them more soluble and easily degradable.

Which substitution mutation has the potential to cause more damage?

Answers

A substitution is a type of mutation in which there is an exchange between two bases (for example, switching A for G). Changing a base can lead to a different codon, and consequently, a change in the protein produced.
Sometimes, the mutation can be silent, meaning that the substitution didn't change the codon or the protein.
However sometimes they may change to a  "stop" codon and  because of that the protein ends incomplete. If it affects an important protein it can completely change the organism.


Researchers at the University of Georgia have evaluated trends in streamside forests in areas within roughly 400 feet of the state’s streams and rivers. A decline in streamed forests is evident across much of the state. Between 1974 and 2005, 41 of the state’s 52 large watersheds showed declines in riparian forests. The greatest losses were in the Upper Chattahoochee, Middle Savannah, Upper Ocmulgee, and Middle Chattahoochee.

Stream-side or riparian land lies directly along rivers, streams, and other bodies of water and provide benefit to aquatic ecosystems. Most specifically, stream-side forests affect the trout populations in North Georgia. How?

A) Trees and shrubs provide both food and shelter for the trout. Tree roots provide a bedding place, while the plant life in general, is a source of nutrition.
B) Riparian vegetation helps to reduce the impact of invasive species which may compete with local fish, especially trout, for the resources needed for survival.
C) Trees and shrubs provide shade, which keeps the water temperature cooler. Lower temperatures allow the water to hold more oxygen, which in turn creates a healthier habitat for the trout.
D) Riparian vegetation traps and removes pollutants from the water. Trout are particularly susceptible to water pollutants. There is a direct correlation between pollutants and trout death.

Answers

Trees and shrubs provide shade, which keeps the water temperature cooler. Lower temperatures allow the water to hold more oxygen, which in turn creates a healthier habitat for the trout.

This is the correct answer the other answer is wrong


Which of the following describes asexual reproduction?


infertile offspring through genetic exchange


fertile offspring despite geographic isolation


two parent organisms and genetic exchange


one parent organism and no egg or sperm

Answers

One parent organism and no egg or sperm

Answer:

one parent organism and no egg or sperm is the correct answer.

Explanation:

Asexual reproduction in which single-parent give rise to several offsprings, without the fusion of gametes.

One parent organism and no egg or sperm:Asexual reproduction takes place in simple organisms,and these organisms are not able to develop sex cells(egg or sperms)

In asexual reproduction single parent organism divide to produce several offspring and they are genetically identical to their parents as they reproduce without the involvement of another organism.

What is the most important variable in determining who successfully quits smoking?

Answers

Determination and willpower

The level of nicotine dependence is the most important factor in determining successful quit attempts. The greater the level of dependence, the more difficult it will be to quit. A high level of physical nicotine dependence is associated with: Increased nicotine exposure results in additional brain changes.

What is nicotine ?

Nicotine is a naturally occurring alkaloid found in the nightshade plant family that is widely used recreationally as a stimulant and anxiolytic. It is a pharmaceutical drug used to treat withdrawal symptoms associated with smoking cessation.

Nicotine is a highly addictive and dangerous chemical. It can cause an increase in blood pressure, heart rate, blood flow to the heart, and artery narrowing (vessels that carry blood). Nicotine may also contribute to arterial wall hardening, which can lead to a heart attack.

Nicotine enters your bloodstream and travels to your adrenal glands, which are located just above your kidneys. Adrenaline is released by the glands, which raises your blood pressure, breathing rate, and heart rate.

Thus, The level of nicotine dependence is the most important factor in determining successful quit attempts.

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Which medications are used to correct hormone deficiency in hypogonadism and treat delayed puberty in males?

Answers

The answer to your question is androgens. Like why can't I just add one word, why 20?

Answer:

AAs like testosterone, DHT derivatives, AI's (3rd generation).

Some people also use SERMs but its not too common.

Explanation:

Dr. o'brien is a physician who specializes in administering anesthetic agents. she is a/an .

Answers

Final answer:

Dr. O'Brien, who specializes in administering anesthetic agents, is an anesthesiologist. Anesthesiologists provide anesthesia for surgical, therapeutic, and diagnostic procedures, provide relief from chronic pain, and deliver care to critical patients.

Explanation:

Dr. O'Brien is a specialist in administering anesthetic agents, which means she is an anesthesiologist. Anesthesiologists are responsible for providing anesthesia before, during, and after surgical, therapeutic, and diagnostic procedures. They also provide relief from chronic pain and care to patients in critical conditions.

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Final answer:

Dr. O'Brien is an Anesthesiologist, a physician who specializes in administering anesthetic agents and monitoring patients during surgeries. They work together with the surgeon and nurse in patients' recovery and care.

Explanation:

Dr. O'Brien is a physician who specializes in administering anesthetic agents, which indicates that she is an Anesthesiologist. Anesthesiologists are medical doctors who play a vital role in procedures requiring anesthesia, such as surgeries. Along with the surgeon and nurse, they review aloud key concerns for the patient's recovery and care post-procedure. Their duty extends beyond just administration of anesthetics though, they also monitor vital signs during surgery, helps with pain management, and even critical care medicine.

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Name two methods other than vaccination for controlling viral diseases

Answers

Vector control and Drug therapy are two other methods for controlling viral diseases. 
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