what are the terms that best identify monomers of lipids

Answers

Answer 1

Lipids don't have monomers but their basic building blocks are fatty acids and glycerol.

Monomers, the smallest building blocks of macromolecules, are linked by covalent bonds to form bigger polymers. The polymer is more than the sum of its parts because it develops new properties.With the release of a water molecule, a monomer unites with another monomer to form a covalent bond.Since there is no base building block that is covalently linked to create the polypeptide, lipids lack monomers. Instead, lipids are made up of a variety of different building blocks that work together to form the polypeptide. These building blocks include glycerol, fatty acid chains, and phosphate groups, all of which are present in varying amounts and structures. For instance, a triglyceride is made up of glycerol and three fatty acid chains. However, some lipids, such as cholesterol, lack even these fundamental elements.

Hence, lipids are made up of fatty acids and glycerol.

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Related Questions

what material has the greatest density

Answers

Answer:The answer is osmium

I think the material with the highest density is osmium

the embryonic germ layer that is the source of connective tissue and muscle is

Answers

The embryonic germ layer that is the source of connective tissue and muscle is the mesoderm.

During the formation of a zygote, three germ layers are formed. Ectoderm, endoderm, and mesoderm are the three germ layers. The mesoderm is the middle germ layer, situated between the ectoderm and endoderm. The mesoderm forms the body's inner tissues and organs. It divides into four parts: the paraxial mesoderm, intermediate mesoderm, lateral plate mesoderm, and chordamesoderm.The mesoderm provides rise to numerous structures, including blood cells, blood vessels, bone, cartilage, connective tissue, dermis of the skin, heart, kidney, muscle, and reproductive organs.

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how to protect the water cycle

Answers

Answer:

Explanation:

The role of rainforests in the water cycle is to add water to the atmosphere through the process of transpiration (in which plants release water from their leaves during photosynthesis). This moisture contributes to the formation of rain clouds, which release the water back onto the rainforest.

what do you think would happen if your body never got rid of anything?​

Answers

Answer:

Answer:U will not be a human if u dont get rid of anything

The body would perish, since its cells and organs were not working properly to move nutrients around the body and and remove waste from it.

brush up on what you learned about eukaryotes this week! one could easily use the evolutionary tree labeled below to make a dichotomy key to separate the three main eukaryotic kingdoms of plantae, fungi, and animalia. however, the protista kingdom is a more difficult group to add to a simple key as there are many exceptions (see the right side of the tree).

Answers

A: presence of cell walls B: Ability to obtain nutrients through absorption C: presence of chitin in cell walls D: ability to move

Character A, which separates plants from fungi and animals, is the presence of cell walls. Plants have cell walls composed of cellulose, while fungi and animals do not have cell walls. Character B, Fungi and animals are heterotrophs that obtain nutrients by absorbing organic material from their environment, while plants are autotrophs that can perform photosynthesis.

Character C, that fungi have, but animals don't, is the presence of chitin in their cell walls. Fungi have cell walls made of chitin, while animals do not possess cell walls. Character D, that animals have, but fungi don't, is the ability to move. Animals are generally capable of locomotion, while fungi are non-motile organisms that rely on other means, such as growth and spore dispersal.

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The question is inappropriate; the correct question is:

Eukaryotes Brush up on what you learned about eukaryotes this week! One could easily use the evolutionary tree labeled below to make a dichotomous key to separate the three main eukaryotic kingdoms of Plantae, Fungi, and Animalia. However, the Protista kingdom is a more difficult group to add to a simple key as there are many exceptions (see the right side of the tree). Using the tree above, answer each question below with the correct matching answer. Use each answer only once. 1. What is character A, which separates plants from fungi and animals? 2. What is character B, that both fungi and animals share, but plants don't have? 3. What is Character C, that fungi have, but animals don't? 4. What is character D, that animals have, but fungi don't?

Eukaryotes:

AnimaliaFungiPlantaeProtista

according to this phylogenetic tree, which of these pairs of prokaryotic subgroups share the most recent common ancestor?

Answers

According to this phylogenetic tree, cyanobacteria is the pairs of prokaryotic subgroups share the most recent common ancestor.

What are cyanobacteria?

Cyanobacteria (also known as blue-green algae) are a group of photosynthetic bacteria that are found in a wide range of habitats, including freshwater, marine, and terrestrial environments. They are some of the oldest known organisms on Earth, with fossil evidence dating back over 3 billion years.Cyanobacteria are unique among bacteria in that they have the ability to carry out oxygenic photosynthesis, a process that uses sunlight to generate energy and produces oxygen as a byproduct. This process is similar to the photosynthesis carried out by plants and is thought to have played a crucial role in the evolution of life on Earth by generating oxygen in the atmosphere.

In terms of their evolutionary relationships with other prokaryotic groups, cyanobacteria are classified within the domain Bacteria, and are thought to be closely related to other photosynthetic bacteria such as the Chlorobi and Chloroflexi. However, the precise relationships between these groups are still the subject of ongoing research and debate among scientists, and the exact branching patterns of their evolutionary history may vary depending on the specific phylogenetic analysis being performed.

In summary, while cyanobacteria are believed to be one of the earliest and most important groups of prokaryotes in the evolutionary history of life on Earth, the specific details of their relationships with other prokaryotic groups may vary depending on the specific phylogenetic analysis being performed.

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What is embryology?
Your own word

Answers

Answer: The branch of biology and medicine concerned with the study of embryos and their development.

Explanation:

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Electromagnetic Spectrum Lab

Does anyone know how to do this?

Electromagnetic Spectrum LabDoes anyone know how to do this?

Answers

Answer:

Note:- I have used random data as there nothing given.

Explanation:

Objectives: The objective of this lab is to identify the elements present in various astronomical objects using spectroscopy.

Hypothesis: It is predicted that the unknown astronomical objects will contain various elements such as hydrogen, helium, lithium, sodium, carbon, and nitrogen.

Procedure: The lab involved using a spectrometer to analyze the spectra of various astronomical objects, including Moon One, Moon Two, Planet One, and Planet Two. The dependent variable was the presence or absence of different elements in the objects, while the independent variable was the spectrometer used to analyze the objects.

Data:

Moon One:

Hydrogen - Yes

Helium - No

Lithium - No

Sodium - No

Carbon - Yes

Nitrogen - Yes

Moon Two:

Hydrogen - Yes

Helium - Yes

Lithium - No

Sodium - No

Carbon - Yes

Nitrogen - Yes

Planet One:

Hydrogen - Yes

Helium - Yes

Lithium - Yes

Sodium - No

Carbon - Yes

Nitrogen - No

Planet Two:

Hydrogen - Yes

Helium - Yes

Lithium - No

Sodium - Yes

Carbon - Yes

Nitrogen - No

Conclusion:

In this lab, we investigated the elements present in various astronomical objects using spectroscopy. By analyzing the spectra of Moon One, Moon Two, Planet One, and Planet Two, we were able to identify the presence or absence of elements such as hydrogen, helium, lithium, sodium, carbon, and nitrogen.

It is essential to use many types of equipment when studying space because different instruments and techniques are sensitive to different wavelengths and frequencies of light. By using a range of tools, astronomers can gather a more complete picture of the properties and characteristics of celestial objects.

If carbon was the most common element found in the moons and planets, the missing element that would make them similar to Earth is oxygen. This is because Earth's atmosphere is composed mostly of nitrogen, oxygen, and carbon dioxide, which are essential for life and the carbon cycle.

The electromagnetic spectrum helps us find out the make-up of stars by analyzing the wavelengths and frequencies of light emitted by them. Different elements emit light at different wavelengths, which allows us to determine the composition of stars.

It is useful to determine the elements that a planet or moon is made up of because it can provide information about its formation and evolution. It can also help us understand the potential habitability of the object and its suitability for future exploration or colonization.

in wolves, grey coat color is dominant and black coat is recessive. brown eyes are dominant and blue eyes are recessive. if two wolves breed who are both heterozygous for coat color and heterozygous for eye color, what is the probability of them having puppies with black coats and blue eyes?
answer choices are:
3/16
1/16
9/16
6/16​

Answers

Answer:

1/16

Explanation:

To answer this question, you will need to set up a dihybrid cross since you have two traits that you are observing. Since the grey coat is dominant, we will label that with the genotype G and the recessive black coat will be g. Since the brown eye color is dominant, we will label that with the genotype B and the recessive blue eye color will be b. Both parent wolves will be heterozygous, which means their genotype is GgBb. Drawing the dihybrid square and filling in the spaces will allow you to have 1/16 are black coat and blue eyed puppies (ggbb). See the attached image for the cross.

in wolves, grey coat color is dominant and black coat is recessive. brown eyes are dominant and blue

If the wolves are heterozygous for both traits and are crossed, then the probability of having puppies with black coats and blue eyes will be 1/16. So the correct option is Option B.

What is the probability of having both recessive alleles in a dihybrid cross?

Considering a dihybrid cross involving heterozygous parents, they will have a genotype AaBb. The phenotypic ratio of a dihybrid cross is 9:3:3:1. With a homozygous recessive genotype for both traits, the ratio of 1 indicates a double recessive phenotype. Only 1/16 of the children will therefore exhibit both recessive phenotypes.

For a recessive trait to be expressed it is essential that both the recessive alleles of the traits are present in the genotype of the organism while the expression of a dominant trait requires only a single copy of an allele to be present.

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In a resting state, sodium (Na ) is at a higher concentration outside the cell and potassium (K ) is more concentrated inside the cell. During an action potential, the sodium levels ________ inside the cell.

Answers

In a resting state, sodium (Na ) is at a higher concentration outside the cell, and potassium (K ) is more concentrated inside the cell. During an action potential, the sodium levels increase inside the cell.

During an action potential, the potassium level inside the cell decreases, and the sodium level inside the cell increases. That is to say, there is an outflow of potassium and an inflow of sodium ions.

Action potential usually occurs when an electrical signal disrupts the balance of Na+ and K+ within a cell membrane, briefly depolarizing the concentrations of each.

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I need help on this problem

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Daphnia is an acuatic microarthropod which depends on the environment to perform its metabolic tasks. Arthropods are poikolotermic, which means their body temperature depends in the environment's temperature. Considering the above, it would be important to measure the following variables for some period fo time, let's say 90 days: 1) temperature, 2)salinity, 3)organic matter and 4) pH. Number of days is important, so we could give Daphnia time to acclimate to its new environment. We should measure at least to points, in the beginning, to measure the immediate to response to the abiotic change, and at the end, to measure the effect of the measured variable in Daphnias heart.

The design could comprise treatments with normal values of this variables where Daphnia lives, and with a couple of extreme values (both upper and lower extremes. For example, imagine Daphnia uses to live in lakes with mean temperature of 19 C, then this would be the control case for temperature and you could also use 14 C and 24 C, as the treatments to explore the effects of temperature variation. In any case the choice of values should be informed by literature. For example with ongoing climate change, you could use the projected rises in temperature to explore how Daphnia would perform in those cases. After performing the individual variable assays (I mean, temperature fluctuates, the rest of parameters are hold the same). It would be pretty informative to combine variables. Let's say, how could Daphni behave with warming and acidic pH. Another example, how could Daphnia behave with warming and organic matter enrichment/oligotrophy (poor concentration of nutrients). In this way you could asses more realistic scenarios, since nature has these and much more variables playing simultaneously. According to the problem, heart rate is the variable of interest (that is of our response variable), therefore we should measure heartrate in all the conditions mentioned above. As all organismis search to keep their metabolism/functions (that includes heart rate, among many other) with major changes, we should see some fluctuations in the begginng of the assay, but their will tend to stabilize if Daphnia is able to cope with the altered environment conditions.

Pathogenic microbial agents include bacteria, worms, protozoa, viruses, fungi, and heavy metals.
a. true
b. false

Answers

The statement that “ pathogenic microbial agents include bacteria, worms, protozoa, viruses, fungi, and heavy metals ” is false.

Pathogens are microscopic organisms that have the ability to enter the body and can be a source of disease for the body. It includes tiny living organisms which are not visible to the normal eye. As the pathogens definition includes only living organisms therefore heavy metals are not included in the group of pathogens while bacteria, worms, protozoa, viruses, and fungi are considered to be pathogens since they are living organisms and have the ability to penetrate into hosts and can cause a disease or illness.

However, if the levels of heavy metals are too high in the body, they can be dangerous for the body as they have an adverse effect on many different organs.

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the basic signaling unit of the nervous system is called a(n)

Answers

The basic signaling unit of the nervous system is called a neuron responsible for transmitting and processing information in the nervous system.

Neurons are the fundamental building blocks of the nervous system and are responsible for transmitting and processing information. These specialized cells are highly interconnected and work together to facilitate communication within the nervous system.

Neurons consist of three main parts: the cell body, dendrites, and an axon. The cell body contains the nucleus and other cellular components necessary for the neuron's functioning. Dendrites are branch-like structures that receive signals from other neurons and transmit them to the cell body. The axon is a long, slender projection that carries the electrical signals away from the cell body to other neurons, muscles, or glands.

Neurons communicate with each other through electrochemical impulses. When a neuron is stimulated, it generates an electrical impulse known as an action potential. This action potential travels along the axon and triggers the release of chemical messengers called neurotransmitters at specialized junctions called synapses.

The neurotransmitters cross the synapse and bind to receptors on the receiving neuron, transmitting the signal and allowing it to continue propagating through the nervous system.

Overall, neurons' intricate network enables the complex functioning of the brain, spinal cord, and peripheral nerves, allowing for the coordination of various bodily processes and the generation of appropriate responses to stimuli.

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where in a neuron do you find neurotransmitter receptors? where in a neuron does summation take place?

Answers

Neurotransmitter receptors are located on the postsynaptic membrane of a neuron, while summation takes place at the axon hillock.

Neurotransmitter receptors are primarily located on the postsynaptic membrane of a neuron. After neurotransmitters are released from the presynaptic neuron and cross the synapse, they bind to specific receptors on the postsynaptic membrane. This binding process triggers a series of biochemical events that can either excite or inhibit the postsynaptic neuron, depending on the type of neurotransmitter and receptor involved.

There are different types of neurotransmitter receptors, such as ionotropic receptors and metabotropic receptors. Ionotropic receptors are directly linked to ion channels, and their activation leads to rapid changes in the postsynaptic membrane potential. Metabotropic receptors, on the other hand, are indirectly linked to ion channels through intracellular signaling pathways, and their activation results in slower and more prolonged effects on the postsynaptic neuron.

Regarding summation, it takes place at the axon hillock of a neuron. The axon hillock is the region where the axon originates from the cell body. It is a specialized part of the neuron that integrates the input signals received from various dendrites and decides whether or not to generate an action potential.

Summation refers to the process by which the postsynaptic potentials (excitatory and inhibitory) from multiple synapses are added up and reach a certain threshold. If the combined input signals reach or exceed the threshold at the axon hillock, an action potential is triggered and propagated down the axon.

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How do we differentiate between infectious and noninfectious diseases.

Answers

Answer:

Infectious diseases are caused by the passing of one person to another. Corona is an example. Noninfectious diseases, they are just spread by pathogens. Good luck!

The 1977 Soil and Water Resources Conservation Act is carried out and overseen by which governmental organization.
A. U.S. Congress
B. National Resource Conservation Service.
C. Environmental Protection Agency.
D. Department of Defense.

Answers

Answer:

B. National Resource Conservation Service.

Difference between phagocytes and red blood cells

Answers

Necesito los puntos lo siento

During elongation in transcription, RNA polymerase creates a complementary mRNA sequence from a gene. Provide
the mRNA sequence from the given gene sequence.
TACGGCACCCAGCATT

Answers

AUGCCGUGGGUCGUAA. T changes to A. A changes to U. C and G switch.

Transcription is a cellular process which involves the formation of mRNA from DNA of the nucleus. The mRNA sequence for this gene is: "AUGCCGUGGGUCGUAA".

What is Transcription?

Transcription is the formation of mRNA from the DNA present in the nucleus. mRNA is known as the messenger RNA, it is a type of RNA which is responsible for the translation of DNA into proteins. mRNA goes to the ribosome where it synthesizes the polymerization of specific amino acids which forms the proteins.

The given sequence of gene (DNA) is "TACGGCACCCAGCATT". The sequence of mRNA synthesized from this sequence will be complementary and the thymine residues are replaced by the uracil residues in mRNA. In this mRNA molecule, 'A' base pairs with 'U' and 'T' which was present in DNA molecule will bind to 'A', 'G' base pairs with 'C' and 'C' base pairs with 'G'. Therefore, mRNA sequence for this gene is: "AUGCCGUGGGUCGUAA".

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As illustrated below, the molecules of many membranes are arranged with their polar
heads to the outside and their non polar tails to the inside. With this arrangement,
where would you MOST likely find water molecules? (DOK 2)
IGI
A and B
B and C
B only
A and C

Answers

Answer: A and B

Explanation:

Water moves from the outside of the cell to the inside. It is permeable and can pass through the membrane easily .

The inner core is the same size as
I need help

Answers

Answer:

The inner core of Mercury is the same size as Earths core

Explanation:

i think

Which of the following statements describes a law?

Answers

A law is the statement you haven’t written?
Lol

Compare unicellular and multicellular organisms.

Answers

Answer:

Unicellular organisms are made up of only one cell that carries out all of the functions needed by the organism, while multicellular organisms use many different cells to function. Multicellular organisms are composed of more than one cell, with groups of cells differentiating to take on specialized functions.

which two pancreatic hormones closely control levels of glucose in the blood

Answers

Answer:insulin and glucagon

Explanation:these are hormones produced by the pancreas

please help!! i’ll mark brainliest

please help!! ill mark brainliest

Answers

Answer:

See if that helps, im pretty sure it increases :)

Explanation:

The rate of photosynthesis does not increase with higher temperatures for all plants. Plants which grow in colder climates have an optimum rate of photosynthesis at low temperatures. Therefore different types of plants have optimum temperatures for photosynthesis.

Which statement is true about the interrelationship of photosynthesis and cellular respiration?

A. Both photosynthesis and cellular respiration begin with carbon dioxide and water and produce energy in the form of glucose.

B. Cellular respiration releases carbon dioxide and water, which are the reactants in photosynthesis.

C. Photosynthesis releases energy from unstable molecular bonds to begin the process of cellular respiration.

D. Photosynthesis produces carbon dioxide and water, which are the chief reactants in cellular respiration.

Answers

Answer:

b

Explanation:

While cellular respiration releases carbon dioxide into the environment, photosynthesis pulls carbon dioxide out of the atmosphere.

Blood vessels are connected to nerve fibers which are regulated by the
nervous system. When innervated they respond by doing what?

Answers

Answer:

When blood vessels are innervated they respond by contracting and relaxing their muscle wall, as a result of the activity of the autonomic nervous system.

Explanation:

The nerves that are responsible for the innervation of the blood vessels are called nervi vasorum, and are composed of nerve fibers of the sympathetic and parasympathetic nervous systems.

The innervation of the blood vessels specifically acts on the muscular wall of the vessel, so it contracts or relaxes depending on the activity of the nervous system:

Sympathetic nervous system stimulates vascular contraction.Parasympathetic nervous system makes the vascular smooth muscle relax.

The action of the autonomic nervous system has an effect on blood pressure, being a determinant of normal or pathological behavior of the arteries.

When chloroplasts are struck by light
Select one:
a. There is a transfer of electrons that results in a production of carbon dioxide and water
b. Glucose is produced within the thylakoid stacks
c. ADP is produced within the the thylakoid stacks
d. Chlorophyll is energized and the energy is used to create ATP and NADPH
As electrons pass through the electron transport system they lose energy. This energy is used to
Select one:
a.Produce ATP
b.Produce NADPH
c.Release heat
d.Trap sunlight
If a plant were deprived of carbon dioxide which process would be directly affected?
Select one:
a. Light dependent reactions
b. Light independent reactions
c. The Krebs cycle
d. The electron transport system
The similarity between aerobic and anaerobic respiration is that they both produce
Select one:
a. Oxygen
b. Lactic acid
c. Energy
d. Ethanol

Answers

When chloroplasts are struck by light, chlorophyll is energized, and the energy is used to create ATP and NADPH. The correct option is a.

As electrons pass through the electron transport system, they lose energy, which is used to produce ATP. The correct option is a.

If a plant is deprived of carbon dioxide, the light-independent reactions (also known as the Calvin cycle) would be directly affected. The correct option is c.

The similarity between aerobic and anaerobic respiration is that they both produce energy. The correct option is c.

When chloroplasts are struck by light, chlorophyll molecules in the chloroplasts absorb the light energy. This energizes the chlorophyll and triggers a series of reactions in the thylakoid membranes. The energy is used to create ATP (adenosine triphosphate) and NADPH (nicotinamide adenine dinucleotide phosphate), which are essential for powering the subsequent reactions in the light-independent reactions (Calvin cycle) of photosynthesis.

As electrons pass through the electron transport system in chloroplasts or mitochondria, they lose energy. This energy is used to pump protons across a membrane, creating a proton gradient. The flow of protons back through ATP synthase allows the enzyme to produce ATP.

If a plant is deprived of carbon dioxide, the light-independent reactions (Calvin cycle) would be directly affected. In these reactions, carbon dioxide is used to fix carbon and synthesize glucose and other organic molecules. Without carbon dioxide, the production of glucose and other organic compounds cannot occur efficiently.

The similarity between aerobic and anaerobic respiration is that they both produce energy. Aerobic respiration occurs in the presence of oxygen and involves the complete breakdown of glucose into carbon dioxide and water, generating a large amount of energy in the form of ATP. Anaerobic respiration, on the other hand, occurs in the absence of oxygen and produces energy through a partial breakdown of glucose, leading to the production of either lactic acid or ethanol, depending on the organism.

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The cell theory states that all living cells come from pre-existing cells. If that's true then, how did the first cell originate?

1 not enough information is given
2 Nature created the first cell.
3 The first cell originated spontaneously.
4 This postulate of cell theory is false.

Answers

Answer:

option 2 and 3 are seems to be correct.

Explanation:

    according to our studies the options  and 3 are seems to bee correct because the first cell was created by nature not by man or any other organism and the term spontaneously also look to be true. so my answer is that options 2 and 3 are correct.

How do the components of sugar molecules combine to form proteins and other larger carbon based molecules?

Answers

Monomers such as monosaccharides and amino acids bond with each other through dehydration synthesis, where an H20 molecule is lost.

Does metamorphosis occur in thyme plant's life cycle?

Answers

Answer:

In addition, although the term metamorphosis is generally not applied to plants

Answer:

i dont think so

Explanation:

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