aquatic plants do not contain
a) chloroplasts
b)cells
c) lignin
d) nuclei
e) chlorophyll

Answers

Answer 1
Answer;

c) lignin

Explanation;Aquatic plants are plants that live within watery environments, they serve as food and habitat for animals living in the sea and prevent shorelines, ponds and lakes from eroding by providing soil stability.Aquatic plants have less rigid structure since water pressure supports them.The cell walls of all vascular plants contain a polymer called lignin.  Lignin is water-resistant polymer which reinforces cell walls, keeping them from collapsing.Aquatic plants lack lignin as they are supported by water pressure which prevents them from collapsing and reinforces the cell walls.

Related Questions

Which scenario is an example of a negative feedback loop?



A.
When body temperature increases, sweat is produced as a cooling agent to lower body temperature.
B.
In some parts of the world, birth rates are far exceeding death rates, which has led to overpopulation.
C.
Ice reflects sunlight much better than water. A warmer atmosphere is turning ice to water, which is absorbing more of the Sun’s energy.
D.
A warmer atmosphere is leading to warmer oceans. A warm ocean releases more carbon dioxide, which traps more heat in Earth’s atmosphere.

Answers

Answer:

A.  When body temperature increases, sweat is produced as a cooling agent to lower body temperature.

Explanation:

A negative feedback mechanism is one that works by reducing a given stimulus. This mechanism is directly linked to maintaining our body's balance (homeostasis) and hormone secretion.

Sweat acts as a negative feedback mechanism as follows: When the nervous system detects the change in temperature during exercise, for example, it understands this change and stimulates the release of sweat.

As we perspire, sweat gets on the skin and then evaporates, cooling the body.

In other words, this means that by detecting the increase in body temperature, the body caused it to decrease as negative feedback through the production of sweat.

When dave was told by his doctor that he was in the advanced stages of cancer, dave immediately questioned the report and sought a second opinion from another doctor. dave is exhibiting which reaction to impending death?

Answers

The answer to this question should be Denial.

Dave is exhibiting denial as a reaction to impending death.

Denial is a common psychological defense mechanism in which individuals refuse to accept or acknowledge a distressing reality or truth. When faced with a diagnosis of advanced cancer, the news is often overwhelming and emotionally distressing. In an attempt to cope with the fear and anxiety associated with the diagnosis, some individuals, like Dave, may resort to denial as a way to protect themselves from the painful reality of their condition.

By seeking a second opinion from another doctor, Dave is displaying his unwillingness to accept the initial diagnosis and is hoping for a different outcome or more positive prognosis. Denial allows individuals to momentarily escape from the overwhelming emotions and fears related to their illness, giving them time to process the information at their own pace.

It is important to note that denial is a natural and common reaction to serious or life-threatening diagnoses. Many individuals go through various stages of emotional responses when confronting their mortality, and denial is just one stage in the broader context of the Kübler-Ross model, also known as the five stages of grief, which includes denial, anger, bargaining, depression, and acceptance. Each individual may experience these stages differently and in varying sequences. As time progresses and individuals come to terms with their circumstances, they may move through these stages and eventually reach a place of acceptance and emotional resolution. It is essential for patients to have supportive healthcare providers and caregivers who understand and respect their emotional responses during this challenging time.

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Select 3 true statements about Analogous Structures

A. They have the same function
B. They have evolved independently
C. They indicate an evolutionary relationship
D. They are adaptions to the same environment

Answers

Answer:

A. They have the same function

B. They have evolved independently

C. They indicate an evolutionary relationship

Explanation:

Analogous structures are structures with a different embryonic but have evolved to perform similar function.Analogous structures are a result of convergent evolution which is the independent evolution of similar features in species of different lineages or different embryonic origin.Examples of analogous structures include; wings in flying animals like bats, birds, and insects, and fins in animals like penguins and fish.

A _[blank]_ is an organism's role in a community.


carrying capacity


habitat


niche


biotic factor

Answers

♫ - - - - - - - - - - - - - - - ~Hello There!~ - - - - - - - - - - - - - - - ♫

It would be 'niche.'

Hope This Helps You!

Good Luck (:

Have A Great Day ^-^

↬ ʜᴀɴɴᴀʜ

The answer is B niche

Hope this helps!

5. Challenge: A chemical equation is balanced when each side of the equation includes the same number of each type of atom.


A. Is the equation balanced as written? Why or why not?

B. If you are familiar with balancing equations, balance the photosynthesis equation. Write the balanced equation below.

Answers

Final answer:

The provided photosynthesis chemical equation is balanced. It has equal numbers of each type of atom on both sides, preserving the principle of conservation of matter. This process is pivotal in nature, allowing plants to convert carbon dioxide and water into glucose and oxygen.

Explanation:

In order to answer your question, we first need to provide the unbalanced equation for photosynthesis: 6CO2 + 6H2O → C6H12O6 + 6O2. To check this equation, we see that both sides each have 6 carbon atoms (C), 18 oxygen atoms (O), and 12 hydrogen atoms (H), so it is indeed balanced.

Atoms, equations, and their balance are crucial in chemistry. Balancing equations, such as the one for photosynthesis here, ensures conservation of matter, a fundamental scientific principle stating matter cannot be created or destroyed. Photosynthesis is just one fascinating example of this in biology where plants convert carbon dioxide and water into glucose and oxygen.

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What is major goal of the federal government when managing land resources ?

Answers

Final answer:

The federal government aims to conserve and sustainably use natural resources for both current and future generations, balancing conservation with economic viability, and enhancing quality of life.

Explanation:

The major goal of the federal government when managing land resources is to balance the conservation of natural resources with their sustainable use, so as to meet the needs of both present and future generations. This involves regulating public access to common goods like natural resources, which are in limited supply and can't be simply multiplied as demand increases. The U.S. Forest Service, for instance, aims to 'sustain the health, diversity, and productivity of the nation's forests and grasslands' in a way that benefits the public. The government often implements environmental laws with flexibility and incentives, rather than a strict command-and-control approach, to encourage private landowners to protect endangered species and maintain habitats. Moreover, the federal government seeks to make the most efficient use of nonrenewable resources, sustain the economic viability of farm operations, and enhance the quality of life for society as a whole.

What is one way that scientists use metagenomics? question 20 options: evaluate the effectiveness of drugs based on individual's genomic sequence forensic analysis study evolutionary relationships study the genomes of multiple species in the same environmental niche?

Answers

Final answer:

Scientists use metagenomics to study the genomes of multiple species in the same environmental niche.

Explanation:

One way that scientists use metagenomics is to study the genomes of multiple species in the same environmental niche. This involves isolating DNA from multiple species within an environmental niche, cutting it up and sequencing it, and then reconstructing the entire genome sequences of multiple species from the sequences of overlapping pieces. By studying the genomes of multiple species in the same environmental niche, scientists can gain insights into the diversity, interactions, and functional roles of different organisms within a specific ecosystem.

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Final answer:

Scientists use metagenomics to analyze the collective genomes of multiple species in the same environmental niche, aiding in the rapid identification of new species and the assessment of environmental impacts on microbial communities.

Explanation:

Understanding Metagenomics

One significant way that scientists use metagenomics is to study the genomes of multiple species existing within the same environmental niche. This approach allows researchers to understand the collective genomic content of microorganisms and examine microbial diversity without the need for isolating and culturing individual species. Metagenomics can rapidly identify new species and assess the impact of environmental factors, such as pollutants, on microbial communities. It can also delve into how these communities change in response to the physical and chemical fluctuations in their environments.

Metagenomics differs from traditional microbiology, which focused on pure cultures, as it considers the intricate interactions within microbial communities or biofilms. Using techniques like DNA sequencing from various species within an environment, metagenomics can reconstruct entire genome sequences, providing insights into ecological dynamics and potential biotechnological applications.

When heat is added to a substance describe how the molecules are affected enter your answer in the space provided

Answers

molecules will gain energy, causing them to move faster and spread further from each other

how does you body get energy?
a)breaking down food molecules and building new molecules

b)converting light energy to chemical energy

c)converting water to nutrients

d)taking in oxygen from your lungs

Answers

breaking down food molecules and building new molecules

Voluntary control of skeletal muscles is provided by the

a. spinothalamic pathway
b. corticospinal pathway
c. spinocerebellar pathway
d. posterior column pathway

Answers

The correct answer is: b. corticospinal pathway

The corticospinal pathway is a motor pathway that  starts at the cerebral cortex and terminates on lower motor neurons and interneurons in the spinal cord. Its function is to control the movements of the limbs, directly and voluntary.

What types of cells does meiosis produce?

Answers

Meiosis produces our sex cells or gametes(eggs in females and sperm in males).

Hope this helps have a good day my friend....

they produce gametes

Monica LePointe was murdered at a popular dance club called Disco Inferno. The main suspect in the crime is her cousin Erika Harris. Monica’s body was found by another club dancer, who immediately yelled for a bouncer. The bouncer realized Monica was dead or dying and made a 911 call. A medical team arrived, followed soon by a nearby uniformed police officer/beat officer, who cordoned off the area. Sometime later, a police detective arrived to investigate the crime. In this scenario, which locations are likely places law enforcement might collect evidence from?
Disco Inferno
Monica’s home
Erika’s car
All of the above

Answers

All of the above is he answer

Answer:

The correct answer will be option- All of the above.

Explanation:

In the given situation, to solve the mystery of the death of Monica the police detective will collect the evidence.  

He will collect the evidence from the site of the murder that is the disco she was present at the time of murder which is Disco inferno.

The detective will also collect the additional evidence from the belongings of the Monica like his home as well as the person who is suspect in the crime-  Erika Harris. The detective will search the belongings of the Erika Harris also.

Thus, option- All of the above is the correct answer.

A man pushes a box with a force of 5 N. He pushes it 10 meters in 5 seconds. How much power does he use?A man pushes a box with a force of 5 N. He pushes it 10 meters in 5 seconds. How much power does he use?

Answers

Power=Work/Time

work=ForcexDistance

P=(5x10)/5

P=10W

Final answer:

The power used by a man who pushes a box with a force of 5 N over a distance of 10 meters in 5 seconds is 10 watts.

Explanation:

To calculate the power used by the man pushing the box, we start by calculating the work done. Work is defined as the force applied to an object multiplied by the displacement in the direction of the force. In this case, the man applies a force of 5 N over a distance of 10 meters, which results in 50 J (joules) of work (Work = Force x Distance).

Next, since power is the rate at which work is done, we divide the work by the time it took to complete the work. The man took 5 seconds to push the box 10 meters, so the power is calculated by dividing 50 J by 5 seconds, resulting in 10 W (watts) of power used (Power = Work / Time)

Which of the following genotypes is heterozygous? TT Tt tt

Answers

Tt heterozygous or hybrid

Select three foods that do NOT need to be delivered to a grocery store as quickly as possible after processing.

apple
cereal
wheat
lettuce
fish
canned soup
milk

Answers

canned soup fgfgggchcgv

Apple can soup wheat

What would most likely happen to a species of bird if the forest in which it lives were cut down?

Answers

It would most likely decrease due to its habitat (food source) being destroyed. This is because their prey (insects,etc) would die or leave due to deforestation.

Identify each example on the diagram as a carbon source or a carbon sink.

Answers

Answer: In this order from left to right: carbon sink, carbon sink, carbon source

Explanation: i took the edmentum test

The labels in the image should be placed as follows:

Carbon sources:

Factories ,Power stations, Vehicle emissions, Fossil fuels (coal, natural gas),Respiration.

Carbon sinks:

Plants ,Forests ,Ocean .

The carbon cycle is the process by which carbon is exchanged between the atmosphere, biosphere, geosphere, and hydrosphere.

Carbon dioxide (CO2) is the main form of carbon in the atmosphere. Plants take in CO2 during photosynthesis and use it to produce food.

Animals consume plants and release CO2 back into the atmosphere through respiration. CO2 can also be released into the atmosphere through the burning of fossil fuels.

The ocean is a major carbon sink, absorbing about a quarter of the CO2 that is released into the atmosphere.

Forests are also important carbon sinks, as they absorb CO2 from the atmosphere and store it in their biomass.

Human activities, such as the burning of fossil fuels and deforestation, are disrupting the carbon cycle.

This is leading to an increase in the concentration of CO2 in the atmosphere, which is causing climate change.

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The two muscles of mastication that that are involved in closing of the mandible are the masseter and ________________________ muscles.

Answers

The two muscles of mastication that that are involved in closing of the mandible are the masseter and pterygoid muscles.

Actually, three muscles that work together are involved in movement of the mandible: Temporalis, Masseter and Pterygoid Muscles.

Temporalis muscle - assists in closing the mouth and moving the mouth from side to side during the chewing.

Masseter muscle- the main chewing muscle and one of the strongest muscles in the body.

Pterygoid muscles- with the Masseter muscle to assist in  the chewing action and jaw rotation.  

The two muscles of mastication involved in mandible closure are the masseter and temporalis muscles. These muscles work together to elevate and retract the mandible, enabling the complex movements necessary for effective chewing.

The two muscles of mastication that are involved in closing of the mandible are the masseter and temporalis muscles. Mastication, or chewing, requires muscles that can exert sufficient pressure to bite and chew food before swallowing. The masseter is a major muscle in this process, elevating the mandible to close the mouth, while the temporalis supports this action by retracting the mandible. You can even feel the temporalis in action by placing your fingers on your temple as you chew. These two muscles work in concert to enable the jaw to perform the complex movements necessary for breaking down food.

Together, the masseter and temporalis allow for up-and-down and side-to-side movements of the jaw, which are essential for effective chewing. While the masseter is the main muscle for chewing, the temporalis plays a crucial role in assisting with the elevation and retraction of the mandible to facilitate mastication.

What information can not be obtained from the sequence of a gene? view available hint(s) what information can not be obtained from the sequence of a gene? whether the gene is methylated. relationship between two species. effects of mutation on gene function. amino acid sequence of the protein?

Answers

The right answer is A.

The methylation profile of DNA is not obtained when DNA sequencing is performed.

Methylation is a process that can occur in DNA especially at the cytosine level. And this has a very important role in gene expression as it is part of the epigenetic expression.

Gene methylation can induce or repress gene expression depending on the localization of methylated bases.

Further explanation

Gene expression is a series of processes using information from a gene for the synthesis of functional gene products. These products can be proteins, as well as non-protein coding genes such as RNA transfer (tRNA) or small nucleus RNA genes (snRNA), both of which are functional RNA products.

The process of gene expression is used by all living things including eukaryotes, prokaryotes (bacteria and archaea), and is used by viruses - to produce macromolecular machines for their survival.

Several stages in the process of gene expression are transcription, splicing or RNA splicing, translation, and post-translational modification of proteins. Gene regulation provides cell control over structure and function, and is the basis for cell differentiation, morphogenesis, and the versatility and adaptability of each organism. Gene regulation can also function as a substrate for evolutionary change, because the control of the time, location, and amount of gene expression can have a large effect on the function (action) of genes in cells or in multicellular organisms.

In genetics, gene expression is the most fundamental level at which genotypes give rise to phenotypes, that is, observable traits. The genetic code stored in DNA is "interpreted" by gene expression, and the properties of that expression give rise to an organism's phenotype. Such phenotypes are often expressed by protein synthesis that controls the shape of the organism, or which acts as an enzyme that catalyzes the specific metabolic pathways that characterize the organism. Regulation of gene expression is thus essential for the development of an organism.

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Keywords : gene, RNA, DNA

explain the difference between mutations in sex cells and those in somatic cells.

Answers

germ cell mutations are mutations that occurs in sex cells. They can be passed on to offspring. somatic cell mutation are mutations that occurs in any other cells besides sex cells.

Germline mutations affect offspring, while somatic mutations do not pass on to offspring.

Germline mutations occur in gametes and can be passed to offspring, affecting every cell in the offspring. Somatic mutations occur in other body cells and do not pass on to offspring. Somatic mutations are more common due to the higher number of cell divisions in somatic cells.

What are the products of linear photophosphorylation?

A) heat and fluorescence.
B) ATP and P700
C) ATP and NADPH
D) ADP and NADP
E) P700 and P680.

Answers

Answer:

C) ATP and NADPH

Explanation:

Photosynthetic electron transport chain in plant cells is used for extracting sunlight energy via redox reactions through the process of photosynthesis. This process occurs in chloroplast (thylakoid membrane), where light energy is transformed into chemical energy, that leads to the conversion of water to oxygen and NADP+ to NADPH with transfer of H+ ions across chloroplast membranes. Formed H+ gradient is used for the ATP synthesis.

Which statement correctly distinguishes between a closed circulatory system and an open circulatory system?


An open system does not have vessels, but a closed system does.


A closed system does not have vessels, but an open system does.


Blood does not leave the vessels in a closed system.


Blood does not leave the vessels in an open system.

Answers

Answer:

An open system does not have vessels, but a closed system does.

Explanation:

A closed circulatory system is the one which has blood vessels like arteries, veins, and capillaries for circulation of blood while an open circulatory system is the one in which there are no blood vessels to carry blood and the blood runs freely in the body cavity known as hemocoel. In open circulatory system the tissues are in direct contact with a blood-like fluid known as hemolymph. Evolutionarily, closed circulatory system is considered more advanced and advantageous as compared to open circulatory system. Advanced animals like mammals have closed circulatory system while lower organisms like arthropods (insects) and some mollusks (snails, clams) have open circulatory system.

Which of these results when hormone secretion is regulated by a negative feedback mechanism?

All hormones are regulated by other hormones.
Hormones determine the metabolic rate of all cells.
Hormone concentrations rise and fall depending on the time of day.
The concentration of a hormone remains within a narrow normal range.

Answers

the concentration of a hormone remains within a narrow normal range

What is suggested by the similarity of early embryos of different species of vertebrates?
a. recent common ancestryb. evolution from a distant common ancestorc. no evolutionary relationship between the groupsd. similar environments in the past

Answers

The correct answer is: evolution from a distant common ancestor.

It has been shown that most of vertebrate embryos such as fish, reptiles, amphibians, birds, and mammals’ embryos begin with a basically similar structure: they have gill arches, notochords, spinal cords, and primitive kidneys. This happens because they share ancient genes that ere expressed during a middle "phylotypic period" of embryonic development.

The correct answer is - b. evolution from a distant common ancestor.

The early embryos very often do not resemble the physical appearance of their parents. They tend to have an appearance and features that look much more like some other species or group of animals. That slowly changes though as the embryo matures, gradually taking the shape and physical appearance of its parents.

The early embryos do not have the tendency of relatively quick change as the evolution goes on, but instead, they can have the same features as some very distant ancestor, even from tens of millions of years ago. This suggest that the parents of the embryo, as well as the embryo itself has a distant common ancestor with other species that have that appearance.

We can take the birds as an example. The early embryos of the birds have tails, instead of beak, they have a jaw with tiny sharp teeth, and their appearance is very reptilian. In fact, the birds are related with the reptilians, though that connection dates way back in the geological past.

Number the events from earliest (1) to most recent (6) to outline the development of the cell theory.


Anton van Leeuwenhoek observed small organisms he called “animalcules.”


Robert Hooke was the first to use the word “cell.”


Matthias Schleiden theorized that plants are made of cells.


Theodor Schwann theorized that animals are made of cells.


Hans and Zacharias Janssen created the first microscope.


Rudolf Virchow theorized that cells come from other pre-existing cells.

Answers

Answer:

Number the events from earliest (1) to most recent (6) to outline the development of the cell theory.

✔ 3

Anton van Leeuwenhoek observed small organisms he called “animalcules.”

✔ 2

Robert Hooke was the first to use the word “cell.”

✔ 4

Matthias Schleiden theorized that plants are made of cells.

✔ 5

Theodor Schwann theorized that animals are made of cells.

✔ 1

Hans and Zacharias Janssen created the first microscope.

✔ 6

Rudolf Virchow theorized that cells come from other pre-existing cells.

The correct numbering of the events leading to the development of the cell theory from the earliest to the most recent would be as follows:

1 -Hans and Zacharias Janssen created the first microscope.2 - Robert Hooke was the first to use the word “cell.”3 - Anton van Leeuwenhoek observed small organisms he called “animalcules"4 - Matthias Schleiden theorized that plants are made of cells5 - Theodor Schwann theorized that animals are made of cells.6 - Rudolf Virchow theorized that cells come from other pre-existing cells.

Hans and Janssen created the first microscope in 1595.

In 1665, the word 'cell' was coined by Robert Hooke when he saw compartment-like structures looking through a primitive microscope.

Anton van Leeuwenhoek observed small organisms he called “animalcules" in 1674.

Matthias Schleiden theorized that plants are made of cells in 1838

Theodor Schwann theorized that animals are made of cells in the year 1839

Rudolf Virchow theorized that cells come from other pre-existing cells in 1858.

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A radioactively labeled protein is made by cells and followed through the various organelles in the secretory pathway. After six hours, all of the radioactivity is still primarily in the Golgi apparatus. This suggests that the _____

Answers

This suggests that the protein is targeted to Golgi apparatus.

Protein targeting or sorting is a process by which synthesized proteins are transported to their appropriate localizations in the cell or outside it. Proteins can be targeted to the inner space of an organelle (such as Golgi apparatus or endoplasmic reticulum) or its membrane, plasma membrane, or to exterior of the cell via secretion.  

Usually, protein contains signal sequence on the N terminus that is involved in destination targeting.

Why can dinoflagellate blooms be harmful to humans?
a. dinoflagellates produce toxins that kill shellfishb. during algal blooms, dinoflagellate population densities reach very high levelsc. dinoflagellate blooms are not harmful; they are just unsightlyd. people can get paralytic shellfish poisoning during dinoflagellate blooms

Answers

Dinoflagellate is a type of neurotoxin which is found in the red-tide algae.

The answer is:

d. people can get paralytic shellfish poisoning during dinoflagellate blooms

Dinoflagellate algal blooms, during red-tide, release strong neurotoxins that can be ingested by shellfish and passed on to humans who eat the infected shellfish. The most significant public health problem that has been known to  cause this harmful algae poisoning is: Amnesic Shellfish Poisoning (ASP).

The correct answer is d. People can get paralytic shellfish poisoning during dinoflagellate blooms because dinoflagellate blooms produce toxins that can accumulate in shellfish, leading to paralytic shellfish poisoning in humans.

The correct option is d. People can get paralytic shellfish poisoning during dinoflagellate blooms.

Reasons:

Dinoflagellates produce toxins that can accumulate in shellfish during algal blooms.When humans consume contaminated shellfish, they can suffer from paralytic shellfish poisoning because the toxins attack the nervous system.Symptoms of this poisoning include dizziness, nausea, slurred speech, loss of feeling, and uncoordinated movements, and it can even be fatal.

Thus, dinoflagellate blooms are harmful to humans primarily because of the toxins they produce that accumulate in marine life and can cause severe health issues.

A farmer wants to sell the farm's fruit crop before the fruit have ripened.


Which plant hormones could be used to address this situation?



cytokinins



gibberellins



auxins



ethylene

Answers

answer:gibbrrellins as it have a role in other plant processes, such as stem elongation, germination, flowering, and fruit ripening

In this experiment, how many chromosomes were present when meiosis i started?

Answers

46 chromosomes. Hope you do well.

PLZ ANSWER ALL :(
I WILL GIVE YOU BRAINLIEST

Answers

The first one is:

A. a silent mutation results in the insertion of a different amino acid.

The second one is:

A. Disease resistance

The last one is:

C. commensalism

Hopefully this helps :)

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