after they first documented the change in beak depth, what happened over subsequent years of measurements?

Answers

Answer 1

The fourth option, where it continued to move around for a variety of complicated reasons due to a lack of the same food, is the correct one.

In this case, the beak continued to move in various directions while eating a single seed. It moves in another direction and deepens as it moves towards to the insect eating area. several centuries because evaluating the new characters in those environments takes more time than 10 or 20 years, which is how new characters evolve.

Beak depth varies with the severity of the drought: plants produce more softer seeds in wet years and fewer harder seeds in dry years. In years of drought, only birds with profound beak depths survive. The difference between extreme years is about 5%.

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Complete Question-

After they first documented the change in beak depth, what happened over subsequent years of measurements ?

1. It stayed about the same

2. It continued to change in the same way for the same reason

3.  It was completely random with no connection from one year to the next

4. It continued to drift around in various directions for various complex reasons

5. We don't know because they stopped measuring at that time


Related Questions

Which equation best represents photosynthesis in plants?

Answers

d. The molecular formula for photosynthesis is C6H12O6 + 6O2: 6CO2 + 6H2O.

Phototrophs transform chemical energy into light through a process called photosynthesis, which is then used to power cellular processes. Inside the form of sugars, that are made from carbon dioxide and water, the oxidative phosphorylation is kept in reserve. Commonly used notation for photosynthesis is: 6CO2 + 6H2O C6H12O6 + 6O2. This indicates that the reagents, six carbon dioxide molecules & six molecules of water, are transformed into a sugar molecule or six oxygen molecules, the products, by light energy being absorbed via chlorophyll (implied by the arrow). Carbon dioxide + water —> glucose + oxygen —> cellular respiration is a straightforward word equation that may be used to explain the process of photosynthesis: C6H12O6 + 6O2 6CO2 + 6H2O. 6 CO2 + 6 H2O = C6H12O6 + 6 O in photosynthesis.

(Which of the following equations represents photosynthesis?

a. 6H2O + 6O2 → C6H12O6 + 6CO2

b. C6H12O6 + 6O2 → 6CO2 + 6H2O

c. 6CO2 + 6H2O → C6H12O6 + 6O2

d. 6CO2 + 6O2 → C6H12O6 + 6H2O

e. C6H12O6 + 6CO2 → 6O2 + 6H2O)

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birds have reduce the energetic cost of flying. this example best illustrates which major theme in biology?

Answers

Birds have reduced the energetic cost of flying. This example best demonstrates Evolution which is a major theme in biology.

Evolution is the modification in heritable traits of biological populations over successive generations. Evolutionary processes give drift to diversity at every biological organization level. Many morphological and behavioral characteristics of birds have evolved which lessen the energy expenditure of the flight. Examples are wing shape, the usage of thermals and tail winds, geographic lift, and V-formation flight. Instead of heavy jaws and teeth, they have light beaks. And instead of fur, they have feathers.

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Identify the three types of these types of technology implemented at the Gautrain

Answers

Answer:

Tunnel Boring Machine

Emergency Access Shafts

The use of Contactless Smart Cards for passenger payments

Explanation:

in which strand of cellular nucleic acids would you expect to find 2'-hydroxyls groups on the riboses?

Answers

The correct answer is option C. TATATATATA.

The DNA strand, which is made up of four separate nitrogenous bases, adenine (A), cytosine (C), guanine (G), and thymine (G), contains the 2-hydroxyl groups on the riboses (T). Thymine (T), a repeating nitrogenous nucleotide, makes up the whole of DNA strand C. TATATATATA.

Consequently, it may be inferred that this DNA strand includes 2-hydroxyl groups since thymine (T), one of DNA's four nitrogenous bases, is present in it.

The five-carbon sugar ribose, which maintains the nitrogenous base in place on the DNA strand, is where the 2-hydroxyl groups are found.

In contrast to RNA, which has a ribose sugar with one oxygen atom in place of a hydrogen atom, this strand of DNA's ribose sugar is made up of 2-hydroxyl groups, which is a crucial distinction to make.

Complete Question:

In which strand of cellular nucleic acids would you expect to find 2- hydroxyls groups on the riboses?

A. AGGCTTAGCC

B. CAATTGGCAC

C. TATATATATA

D. UACCAUGGCA

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nerve roots that carry sympathetic outflow exit the central nervous system in which anatomical regions?

Answers

In the grey matter of the spinal cord, between segments T-1 and L-3, are the intermediolateral horns where sympathetic nerve fibers are born.

What purpose do sympathetic fibers fulfill?

The sympathetic nerves, sometimes referred to as "C fibre" or "small fibre" nerves, are grouped together in small clusters outside the spinal cord and are called ganglia. The remaining nerves are not necessary for the ganglia to function properly (automatically).

Why is it required to have sympathetic nerve fibers?

Both reflex and localized changes to the circulatory system are controlled by the sympathetic nervous system, a component of the nervous system (such as sweating in reaction to a rise in body temperature).

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Explain how the thermostat in your house uses a negative feedback system

Answers

The thermostat in a house uses a negative feedback system to regulate the temperature inside the house. A negative feedback system is a type of control system that operates by comparing a desired setpoint with the current temperature and making adjustments to return the temperature to the setpoint.

There is a setpoint on a thermostat in a home, which is the preferred temperature. The thermostat continuously measures the indoor temperature and assesses it against the setpoint. The thermostat instructs the heating system to turn on and increase the temperature if the indoor temperature is too low. The thermostat activates the cooling system and lowers the temperature if the indoor temperature is too high.

As it operates by reversing the direction of temperature change, this continual process of measuring, comparing, and adjusting the temperature is an illustration of negative feedback. In other words, the thermostat will react by making adjustments that lessen the amount of the deviation if the temperature begins to wander from the setpoint.

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which two of the following statements regarding heterotrophs are true? a. amino acids may be a good carbon source for a teterotroph. b. most heterotrophs are restricted to just a few caron substrates

Answers

Amino acids may be a good carbon source for a heterotroph

What roles do heterotrophs play?

There is no doubt that heterotrophs serve as consumers in the food chain. Additionally, they obtain nutrition through holozoic, saprotrophic, and parasitic sources. They also enjoy dissecting sophisticated organic molecules.

As heterotrophs are unable to produce their own food, they must consume it or absorb it. Heterotrophs are also referred to as consumers because of this. Contrary to autotrophs, which must use some of their energy for carbon fixation, heterotrophs are able to utilise all of the energy they acquire from food for growth and reproduction by eating reduced carbon molecules.

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You are studying cellular respiration in biology. Your lab partner finds this model of aerobic respiration, but is confused as to what is

happening. She asks you for your help. Examine the model. What statements would help clarify the process of aerobic cellular

respiration? Choose ALL that apply.


A) Aerobic respiration requires glucose and oxygen.


B) Aerobic respiration produces ATP from glucose and water.


C) Aerobic respiration produces carbon dioxide and water as a byproduct.


D) Aerobic respiration is the process that provides usable energy in the form of ATP.


E) Aerobic respiration occurs in the mitochondria of the cells of eukaryotes, including plants and animals.

Answers

A) Aerobic respiration requires glucose and oxygen. Oxygen is used in the breakdown of glucose, producing energy in the form of ATP.

What is Aerobic?

Aerobic exercise is a type of physical activity that requires the use of large muscle groups and increases the heart rate to a target level. It is also known as cardiovascular exercise because it strengthens the heart and lungs, improving their function.

B) Aerobic respiration produces ATP from glucose and water. During aerobic respiration, glucose and oxygen are broken down to form ATP, water, and carbon dioxide.
C) Aerobic respiration produces carbon dioxide and water as a byproduct. Carbon dioxide and water are produced as a result of the breakdown of glucose and oxygen.
D) Aerobic respiration is the process that provides usable energy in the form of ATP. During aerobic respiration, glucose and oxygen are broken down to form ATP, which is a form of usable energy.
E) Aerobic respiration occurs in the mitochondria of the cells of eukaryotes, including plants and animals. Aerobic respiration takes place in the mitochondria, which are found in the cells of eukaryotes.

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When pollen of a flower is transferred to the stigma of another flower of the same plant, the pollination is referred to as
A. geitonogamy
B. autogamy
C. allogamy
D. xenogamy

Answers

The correct option is A. Geitonogamy

Geitonogamy refers to the movement of pollen grains from the anther of one flower to the stigma of another blossom on the same plant.

The process of moving pollen grains from an anther to the stigma of a pistil is known as pollination. It is a method of bringing non-motile male and female gametes together for fertilisation. Self-pollination is the pollination process in which pollen grains from the anther combine with the stigma of the same flower or a different blossom on the same plant.

Autogamy and geitonogamy are the two types of self-pollination. Geitonogamy is the movement of pollen grains from one flower's anther to the stigma of another on the same plant. This transmission is aided by a pollinating agent. Because the pollen grains are derived from the same plant, it is genetically equivalent to autogamy.

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What is glucose test for bacteria?

Answers

The glucose test for bacteria is a laboratory test used to determine whether bacteria are able to utilize glucose as a carbon and energy source for growth.

In this test, a small amount of a bacterial culture is inoculated into a medium containing glucose and other nutrients. If the bacteria are able to use glucose as an energy source, they will metabolize it to produce acid and/or gas, which can be detected by the presence of a color change or gas production in the medium.

The glucose test is often used as part of a series of tests to identify and classify bacterial species. It can help to distinguish between different groups of bacteria based on their ability to metabolize different sugars and other nutrients. The results of this test, along with other tests, can be used to determine the bacterial species and to guide treatment options for bacterial infections.

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True or False?
If x > 0, then x + 2 = 7.

Answers

Answer:

True

Explanation:

If x > 0, the value if x becomes 5

5 + 2 = 7

Which makes the statement true


hope it helps :)

explain the gas exchange between the circulatory and respiratory systems.

Answers

Oxygen is taken up by the respiratory system and delivered to a circulatory system (blood).

As part of cellular respiration, the circulatory system transports nutrients from of the digestive system and oxygen to the cells. The blood then transports this carbon dioxide waste material back to the lungs where it is expelled.

During this process, carbon dioxide travels from of the blood to the lungs. This occurs in the lungs here between alveoli and a collection of blood capillaries known as capillaries that are found inside the alveolar walls. Oxygen is taken up by the respiratory system and delivered to a circulatory system (blood).

(Explain how the circulatory and respiratory systems work together in order for cellular respiration to occur?)

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What is the significance of the fluid nature of the fluid?

Answers

The fluid nature of the cell membrane is an important aspect of its structure and function. It is an important feature that allows it to function properly and carry out its many roles in the cell.

Some of the key ways in which the fluid nature of the membrane is significant:
Allows for flexibility: The cell membrane is made up of a phospholipid bilayer, which has a fluid consistency.
Facilitates membrane function: The fluid nature of the membrane also allows it to function properly.
Regulates cell interactions: The fluidity of the cell membrane can also play a role in regulating interactions between cells.

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The given question is incorrect, the correct question is given as,


What is the importance of the fluid nature of the membrane?

during careful examination of a tissue under the microscope, john makes note of a large extracellular matrix and blood vessels between the cells in the tissue. what is this type of tissue?

Answers

During careful examination of a tissue under the microscope, john makes note of a large extracellular matrix and blood vessels between the cells in the tissue. This type of tissue is the Connective tissue.

Connective tissue is tissue that supports, protects, and structures the body's other tissues and organs. Connective tissue also stores fat, helps transport nutrients and other substances between tissues and organs, and helps repair damaged tissue. Cells, fibres, and a gel-like material comprise connective tissue. It has already been built.

Connective tissue includes several types of fibrous tissue that differ only in density and cellular structure, as well as more specialized and recognizable types such as bone, ligament, tendon, cartilage, and adipose tissue. They are spread over all parts of the body. Tissue that supports, protects, and structures the body's other tissues and organs. Connective tissue also stores fat, helps transport nutrients and other substances between tissues and organs, and aids in the repair of damaged tissue.

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the trait of medium-sized leaves in iris is determined by the genotype pp'. plants with large leaves are pp, whereas plants with small leaves are p'p'. a cross is made between two plants each with medium-sized leaves. if they produce 80 offspring, what would be the expected number of offspring having large leaves? a. 40 b. 80 c. 60 d. 20

Answers

(a) the trait of medium-sized leaves in iris is determined by the genotype pp' then the  expected number of offspring having large leaves are 20.

PP = large leaves

P'P' = small leaves

PP' = medium leaves

PP' was crossed with another PP' plant:

PP'   x   PP'

progeny = PP, 2PP', and P'P'

PP = 1/4  x 80 = 20 large size leaves plants

PP' = 1/2 x 80 = 40 medium sized leaves plants

P'P' = 1/4 x 80 = 20 small sized leaves.

Hence the  expected number of offspring having large leaves are:

20 large size leaves plants

40 medium sized leaves plants

20 small sized leaves.

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in the cardiac myocyte the phase of rapid depolarization is due to ___

Answers

Option B is correct. The step of rapid depolarization in the cardiac myocyte is brought on by a net inflow of positive ions, Na+, into the cell.

The five phases of the cardiac action potential are generated by the cardiovascular or venticular myocyte. Phase 0 is when rapid depolarization takes place. The output across the membrane of the cardiac cell experiences a quick change during this phase that only lasts for a very brief time. It happens as a result of a net flow, or capillary permeability, of Na+ ions into the heart's cells from outside the organ. Therefore, option B should be selected.

Pacemaker cells are the ones that create the nerve impulse in the heart. The majority of the time, quasi cells outside of the heart are what activate the transmission of positive ions like sodium ions to the cell and cause rapid depolarization.

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Complete question-

In the cardiac myocyte, the phase of rapid depolarization is due to

A. increased permeability to Ca2+

B. increased permeability to Na+

C. Reduced permeability to Cl-

D. None of the above are correct.

Which is the best example of a thermal insulator?
Oglass flask
O apartment radiator
O
O plastic handle of tea pot
stainless-steel cooking pot

Answers

Answer:

C. Plastic handle

Explanation:

Materials that are poor conductors of thermal energy are called thermal insulators. Gases such as air and materials such as plastic and wood are thermal insulators.

How do butterflies maintain homeostasis?

Answers

Butterflies are able to maintain homeostasis primarily by migrating away from the sun to find warmth. All animals have the ability to maintain body homeostasis. This is how animals keep everything in balance to survive.

How do butterflies regulate their body temperature?

Butterflies are cold-blooded animals and have no way of regulating their body temperature. Instead, they must rely on their behavioral instincts to warm themselves up in order to fly. This is also known as thermoregulation.

How do butterflies adapt to their environment?

Some butterflies protect themselves with camouflage. By folding the wings, the underside is exposed and blends in with its surroundings. This strategy, known as crypsis, makes them nearly invisible to predators. However, bright colors and distinctive wing patterns can be advantageous. 

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Why are there so few ecosystems with more than four levels of consumers?
A) Predators at the highest trophic levels simply are not intelligent enough to hunt other top predators.
B) Consumers at these highest trophic levels typically form social groups that stop reproducing at high densities.
C) Top consumers compete with and kill each other with increasing population size.
D) Biomass decreases by about 90% at each trophic level, moving upward

Answers

D) Biomass decreases by about 90% at each trophic level, moving upward is true.

The amount of energy that is available at each trophic level in an ecosystem determines how many levels there can be. Because of inefficient energy transfer between organisms and metabolic processes, energy is lost at every trophic level. Approximately 10% of the energy at one trophic level is typically transferred to the next level, and this energy loss results in less energy being available for the consumers at the next trophic level. At each trophic level as you move upward, biomass declines by around 90%.

There are fewer individuals and less diversity in this region of the food chain at the highest trophic levels due to the poor energy availability and low biomass of top consumers.

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All living cells, both prokaryotic and eukaryotic, have the following cell structures: plasma membrane, cytosol, ribosomes, and at least one chromosome. Choose any one of these. Describe its basic structure (including molecular composition) as well as the function. Explain why a cell could not exist without the function(s) performed by this cell structure.

Answers

Prokaryotic cells and eukaryotic cells are the two fundamental types of cells. The primary distinction between eukaryotic and prokaryotic cells is the presence of a nucleus in eukaryotic cells.

The nucleus stores DNA, the genetic material found in cells. The nucleus is surrounded by a membrane. Prokaryotic cells do not have nuclei. Their DNA, on the other hand, is floating around inside the cell. Prokaryotes are organisms that have prokaryotic cells.

All prokaryotes are single-celled (unicellular) organisms. Bacteria and archaea are the only prokaryotes. Eukaryotes are organisms that have eukaryotic cells. Protists, fungi, plants, and animals are all examples of eukaryotes. Eukaryotes are multicellular organisms. Eukaryotes can only have one cell. Bacterial and eukaryotic cell architectures are similar.

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what would be the metabolci effect si lactate dehydrogenase was inhibited under anaerobic conditions

Answers

The correct option is E; Glycolysis would eventually stop due to a lack of NAD+.

Lactate dehydrogenase inhibition A causes oxidative stress and slows tumor development. Have a diet rich in fruits and vegetables, low-fat protein sources, and fiber. Consume plenty of water.

Consume enough calories (about 300 more calories than normal per day). Walking keeps you active. LDH (lactate dehydrogenase) is a key enzyme in the anaerobic metabolic process.

It belongs to the oxidoreductase class and has the enzyme commission number EC 1.1. 1.27. The enzyme's role is to catalyze the reversible conversion of lactate to pyruvate by reducing NAD+ to NADH and vice versa. Lactate dehydrogenase (also known as lactic acid dehydrogenase, or LDH) is an enzyme present in nearly all tissues of the body. It is essential for cellular respiration, which is the mechanism by which cells breathe.

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Full Question;

what would be the metabolci effect si lactate dehydrogenase was inhibited under anaerobic conditions?

Glycolysis would continue via the citric acid cycle and electron transport chain.

O Glycolysis would continue using FAD as the electron carrier.

Glycolysis would stop due to a lack of ATP.

Glycolysis would continue, but without ATP production.

O Glycolysis would eventually stop due to a lack of NAD+.

why are comets composed of ice and dust? no goovxgle answers. if ur answer is correct and makes sense ill give u brainiest, give 5 stars and cavxsh avxpp u 3

Answers

Comets are composed of ice and dust because they are remnants from  early solar system composed of materials that have remained unchanged since the formation of solar system about 4.6 billion years ago.

Why are comets composed of ice and dust?

The ice in comets is believed to be made up of water, with smaller amounts of other volatile compounds like carbon dioxide, methane, and ammonia. The dust in comets is composed of materials including silicates and metals that formed into solid particles.

Early solar system was a cold place, and materials in the outer regions of  solar system, where comets are thought to have originated were never heated enough to vaporize and this allowed water and other volatile compounds to freeze into ice and the solid particles combined to form the dust.

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Explain how rocks play a major role in both relative and numerical dating

Answers

Relative dating is the process of assigning a date based on the rock layer and any known objects discovered at a similar level. The amount of half-lives that a rock has had can be used in numerical dating to determine the rock's age.

The practice of estimating an object's age based on its surroundings is known as relative dating. A billion-year-old rock will probably be buried deeper in the earth than the most recent smartphone that you just dropped, according to the fundamental and overarching notion. There are numerous approaches to doing this. To put it another way, items of the same age usually have the same depth. But, numerical dating gives us a more precise way to establish an object's age. Rocks, fossils, and artifacts don't come with birth certificates stating when they were made, so we utilize a range of other techniques to establish their ages, including radioactive dating.

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Under what conditions would the butterflyfish be unable to adapt to the change in the food sourcer

Answers

The reef butterflyfish is well suited to life on the reef. Its compressed body allows for darting in and out of coral. The small, protractile mouth is specifically adapted to crevice feeding.

why is changes in a song gene significant to speciation??

Answers

Even without genetic evolution of female preferences, given the diversity in vocalizations, the formation of song preferences through sexual imprinting may still lead to reproductive isolation.

What part do genes play in speciation?

When reproductive isolation between two or more populations emerges from alleles already existing in the shared ancestral population rather than through new mutations, this is known as standing genetic variation.

Therefore, there may be two ways that gene expression can support ecological speciation: either indirectly by encouraging population persistence or more directly by influencing adaptive genetic divergence in features that cause reproductive isolation. According to many widely recognized definitions of species, speciation is the process by which two genetically identical populations diverge to the point at which their continued fusion is impossible. Therefore, species are independent and genetically unique.

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the outer portion of the pericardium is a tough, dense connective tissue layer called the ______ pericardium.

Answers

The pericardium serves as a lubricant to lessen friction between the heart and the surrounding structures, as well as mechanical protection for the heart and large veins. Mesothelial cells play a critical part in all areas of pericardial function.

What is the main role of pericardium?

It keeps your heart in its proper position within the chest cavity and guards against infections. The serous pericardium makes up the inner layer.

The pericardium has two walls: an outer layer of fibrous tissue and an interior layer of serous tissue. The pericardium's fibrous layer is a single layer of connective tissue that is composed primarily of collagen type I and type III and elastin fibers. It is elastic but non-distensible.

Therefore, The outer layer is the fibrous pericardium. It's joined to your diaphragm and is formed of dense connective tissue.

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Members of which bacterial phylum share a unique morphology?a. Spirochaetes
b. Firmicutes
c. Chlamydias
d. Cyanobacteria

Answers

Spirochaetes, which have a unique corkscrew shape, this members of bacterial phylum share a unique morphology.

They are gram negative bacteria with helical coiled shaped cells, they are also motile and are generally in watery environment.

They are bacteria, which are pathogens and cause diseases like as syphilis, yaws, Lyme disease, and relapsing fever.

spirochaetes comes under the type of bacteria within the phylum Spirochetes

The shape is like that because of endoflagella and axial filament that gives the spirochete its unique spiral/twisting

The axial filament present  attaches to an opposite end which curls around the body of the cells and then which is enclosed by an envelope

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Glycerol
A fat molecule is composed of two types of smaller molecules: ___ and fatty acids.

Answers

A glycerol backbone and three fatty acid tails make up the two types of components that make up a fat molecule. A fatty acid is made up of a long hydrocarbon chain connected to a carboxyl group, whereas glycerol is a tiny chemical molecule containing three hydroxyl (OH) groups.

Natural fatty acids between 4 and 28 have an unbranched chain with an even number of carbon atoms in the majority of cases. Fatty acids can account for as much as 70% of the total weight of the lipids in some species, such as microalgae. In other species, fatty acids, such as triglycerides, phospholipids, and cholesteryl esters, are not present in their purest form. In all of these forms, fatty acids are vital cellular building components and one of the main nutritional sources of energy for animals.

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the nutritive tissue of the seeds of angiosperms is ________, while the nutritive tissue in the seed of a gymnosperm is______.

Answers

Angiosperm seeds have triploid nutritive tissue, whereas gymnosperm seeds have haploid nutritive tissue.

The nutritive tissue of the seeds of angiosperms is the endosperm, while the nutritive tissue in the seed of a gymnosperm is usually the female gametophyte, also known as the megagametophyte or the "nucleus" of the ovule.

In angiosperms, the endosperm is formed after fertilization and provides nutrients for the developing embryo, which will eventually grow into a new plant. In some species, such as corn and wheat, the endosperm is part of the seed that is harvested for food.

In gymnosperms, the female gametophyte is formed before fertilization and serves as a source of nutrients for the developing embryo. It is typically smaller than the endosperm of angiosperms and is not as important for food production.

The complete question is:-

The nutritive tissue of the seeds of angiosperms is ________, while the nutritive tissue in the seed of a gymnosperm is______.

A. diploid, haploid

B. triploid, diploid

C. haploid, diploid

D. triploid, haploid

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what is the scientific name for the northern lights?

Answers

The northern lights, also known as aurora borealis, are a magnificent, multicolored light show that can frequently be seen in the northern hemisphere's night sky.

The aurora australis, or southern lights, are the name for auroras that occur in the southern hemisphere. Due to their proximity to Earth's magnetic poles, the northern and southern lights are both polar lamps, or aurora polaris. A truly breathtaking natural occurrence, polar lights (aurora polaris) can be seen in the both northern and southern hemispheres. The scientific name for the northern lights is aurora borealis, and the name for the southern lights is aurora australis. Thankfully, they happen frequently. Landlord of the northern lights tour operator Lights Over Finland and photographer Chad Blakely said, "The lights are happening twenty-four hours a day, seven days per week, 365 days a year."

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Other Questions
Multiply out the brackets and then simplify: 12(-10x+5y) Was Bacon's Rebellion a precursor to the American Revolution orsomething else? Colonists came to rebel against colonial authority100 years later in what became the American Revolution. Here,colonists felt that Parliament and King George III were guilty of manytransgressions against them including taxation withoutrepresentation. Bacon had many grievances of his own with royalauthority which he makes clear in his Declaration. While colonists inVirginia in 1676 and colonists generally in 1776 were clearlydiscontent in some manner, does the evidence suggest a correlationbetween the two allowing historians to say that revolutionarysentiment leading to independence existed 100 years prior to theactual event? what is the missing equivalent ratio of 4 : 2 = 10: _ a 41.0-kg child swings in a swing supported by two chains, each 2.90 m long. the tension in each chain at the lowest point is 352 n. (a) find the child's speed at the lowest point. m/s (b) find the force exerted by the seat on the child at the lowest point. (ignore the mass of the seat.) Lab: The goal is to get knowledge of some of a cell's basic building blocks and to look into onion cell structure. Additionally, the aim of this experiment is to examine the appearance of an onion skin cell in a hypotonic solution under a microscope.Question: Why is it important to know the results of this lab? Relation to our body/health/society? Electric utility poles in the form of right cylinders are made out of wood that costs $25.81 per cubic foot. Calculate the cost of a utility pole with a radius of 0.5 ft and a height of 25 ft. Round your answer to the nearest cent. Eric owes his brother $17. He recently got some money for his birthday and plans to use some of it to pay his brother back. Use the variable to represent the amount of money Eric got for his birthday, and use this variable to write an expression for the amount of money Eric will have left after he pays his brother back. Choose the expression for the amount of money Eric has after he pays his brother back.A. 17-xB. x-17C. 17xD. x+17 The figure showed a thin rod of length L and charge Q.Find an expression for the electric potential a distance z away from the center of rod on the line that bisects the rod.Give your answer in terms of L, Q, z and appropriate constants. Find the sum of each infinite geo sequence WILL MARK BRANLIEST48, 24, 12, ... The main reason that the Spanish explorers traveled was to spread Christianity (God from the 3 G's). BUT What was the French explorers main reason? in september, lauren ashley company purchased materials costing $170,000 and incurred direct labor cost of $150,000. overhead totaled $325,000 for the month. information on inventories was as follows: line item description september 1 september 30 materials $120,000 $130,000 work in process 80,000 90,000 finished goods 70,000 65,000 required: what was the cost of goods sold for september? fill in the blank 1 of 1$ what would be the fate of a drosophila larva that inherits two copies of a mutant bicoid gene (one mutant allele from each heterozygous parent)? Which residual plot shows that the line of best fit is a good model? The first active volcano observed outside the Earth was discovered in 1979 on Io, one of the moons of Jupiter. The volcano was observed to be ejecting material to a height of about 3.00105mGiven that the acceleration of gravity on Io is 1.80m/s2 find the initial velocity of the ejected material. Which sentence uses theunderlined vocabulary wordincorrectly?A. She always ate copious amounts of food rightbefore the marathon.PB. The band worked hard and gave a nominalconcert, winning the prize for best performance.C. Her countenance or facial expression wasalways calm, which put her patients at ease. Which of the following training topics would be appropriate for a brokerage to offer to both new licensees and experienced salespeople?a.How to develop a sphereb.How to write a contractc.The basic process for a transactiond.What to do about structural defects which of the following best demonstrates concise writing? a. because this training is a company requirement, it must be completed. b. this is to inform you that until training is completed, pay raises will be withheld. c. there are several things that each and every employee must know about workplace hazards. d. the directors are of the opinion that hazmat training is absolutely essential. July 12, 20 I just came back from the best trip of my life! I want to write down every detailbefore I forget anything.Mom, my brother Jeff, and I took a two-day canoe trip on the Frio River. All of my previouscanoe trips had been short. This was going to be a long one. I was a little afraid. But Momreassured me. She said, Think of how brave youll feel after youve done it.We embarked in clear water under a warm sun. Mom and I paddled first, and then Momswitched with Jeff. We were actually getting along! We ate at noon in a small cove. Turkeysandwiches and chips never tasted so good! Cute tiny frogs hopped around us.Back on the river, Mom and Jeff paddled. The water had turned rough, and the canoe rocked.I clung to its sides. Dont be a baby! Jeff teased. (So much for getting along!)At 4 oclock, the sky darkened. By the time we reached the campsite near the river, rain waspouring. We pitched our big tent on higher ground. Signs warned us about bears in the area,and Jeff huddled, shaking, in his sleeping bag. Whos the baby now? I taunted. But, I feltproud of being the tougher younger sister.The next day, we continued downriver in the rain. At times, it was even exciting battling therough water. The rain finally stopped. The sun came out. I thought, How lucky we are!Mom, I said, lets do this again before the summer is over! Jeff agreed.1. Explain how the author changes during the course of the passage.2. Why is the canoe trip a significant event for the author?3. Describe the authors relationship with her brother.4. What is the central idea of the memoir? Pls answer! Lots of points! Question down below! I have to write notes for Taoism (Also known as Daoism) But I am stuck! Please help! :(