Which is the last section of the digestive system?

small intestine
liver
large intestine
rectum

Answers

Answer 1

Answer:

rectum

Explanation:

mouth to esophagus

esophagus to stomach

stomach to duodenum (1st part of small intestine)

duodenum to jejunum (2nd part of small intestine)

jejunum to ileum (3rd part of small intestine)

ileum to ascending colon (1st part of L. intestine)

ascending colon to transevers colon (2nd part of L. intestine)

transevers colon to descending colon (3rd part of L. intestine)

descending colon to sigmoid colon

sigmoid colon to rectum

rectum to ànal canal

ànal canal to ànus.

Answer 2

Answer:

rectum

Explanation:

ed


Related Questions

Fully explain how cellular respiration is a chemical process whereby the bonds of food molecules and oxygen molecules are broken and the bonds in new compounds are formed resulting in a net transfer of energy.

Answers

Cellular respiration is a metabolic pathway that breaks down glucose and produces ATP. The stages of cellular respiration include glycolysis, pyruvate oxidation, the citric acid or Krebs cycle, and oxidative phosphorylation.

During cellular respiration, a glucose molecule is gradually broken down into carbon dioxide and water. Along the way, some ATP is produced directly in the reactions that transform glucose. Much more ATP, however, is produced later in a process called oxidative phosphorylation. Oxidative phosphorylation is powered by the movement of electrons through the electron transport chain, a series of proteins embedded in the inner membrane of the mitochondrion.
These electrons come originally from glucose and are shuttled to the electron transport chain when they gain electrons.


As electrons move down the chain, energy is released and used to pump protons out of the matrix, forming a gradient. Protons flow back into the matrix through an enzyme called ATP synthase, making ATP. At the end of the electron transport chain, oxygen accepts electrons and takes up protons to form water. Glycolysis can take place without oxygen in a process called fermentation. The other three stages of cellular respiration—pyruvate oxidation, the citric acid cycle, and oxidative phosphorylation—require oxygen in order to occur. Only oxidative phosphorylation uses oxygen directly, but the other two stages can't run without oxidative phosphorylation.). As electrons move down the chain, energy is released and used to pump protons out of the matrix, forming a gradient. Protons flow back into the matrix through an enzyme called ATP synthase, making ATP. At the end of the electron transport chain, oxygen accepts electrons and takes up protons to form water.
Glycolysis can take place without oxygen in a process called fermentation. The other three stages of cellular respiration—pyruvate oxidation, the citric acid cycle, and oxidative phosphorylation—require oxygen in order to occur. Only oxidative phosphorylation uses oxygen directly, but the other two stages can't run without oxidative phosphorylation.

Cellular respiration is a metabolic process called cellular respiration that converts glucose to ATP.

What is cellular respiration?

Cellular respiration has the processes: Glycolysis, pyruvate oxidation, the citric acid or Krebs cycle, and oxidative phosphorylation are the phases of cellular respiration.

A glucose molecule gradually decomposes into carbon dioxide and water during cellular respiration. In the process of transforming glucose, some ATP is directly created.

But far more ATP is later created through a procedure known as oxidative phosphorylation. The electron transport chain, a collection of proteins enmeshed in the inner membrane of the mitochondrion, is what drives oxidative phosphorylation.

Therefore, Cellular respiration is a metabolic procedure by which glucose is changed into ATP.

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Complete the passage to describe independent assortment. (Fill in blanks)

During metaphase 1, the chromosomes line up in the middle of the cell. The way the chromosomes line up is ________ , or independent. This independent alignment results in different possible arrangements or assortments of chromosomes during metaphase. This in turn results in different __________ of chromosomes in _____
cells. During sexual reproduction, the traits that are determined by the genes on these chromosomes are passed on from parents to offspring.

Answers

Answer:

During metaphase 1, the chromosomes line up in the middle of the cell. The way the chromosomes line up is random, or independent. This independent alignment results in different possible arrangements or assortments of chromosomes during metaphase. This in turn results in different sets of chromosomes in daughter cells. During sexual reproduction, the traits that are determined by the genes on these chromosomes are passed on from parents to offspring.  

Explanation:

In metaphase, the typical chromosome is formed by two chromatids joined by a centromere. Each chromatid is composed of a sequence of chromatin ringlets domains. During metaphase I, fibers of the spindle apparatus capture chromosomes and take them toward the center of the cell, to the metaphase plate. Each chromosome of the pair joins with a microtubule of only one of the spindle poles, so the two equivalent chromosomes join the fibers of opposites poles.

The homologous pairs of chromosomes get aligned in the metaphase plate for their posterior separation in anaphase I. When they align in the center of the cell, their orientation is random.    

Answer:

 1st blank: Random

2nd blank: Combinations

3rd Blank: Sex

Explanation: I got 100 on it.

In DNA replication ______.
A. The two strands of DNA come apart.
B. A copy is made.
C. Each copy has one strand of "old" DNA and one strand of "new" DNA.
D. all of the above

Answers

pretty sure it’s all of above

Answer:

you answer to this question is: D all of the above

3. Arrange the following terms in order from smallest/least complex to largest/
most
complex.
O A. Tissue, molecule, cell, organ, organ system, organism
OB. Molecule, cell, tissue, organ, organ system, organism
OC. Tissue molecule, cell, organism, organ, organ system
D. Molecule, cell, tissue, organism, organ, organ system

Answers

Answer:

B.- Molecule, cell, tissue, organ, organ system, organism

Explanation: Found it in the reading assignment, and double checked it to make sure it was right :)

The molecule, cell, tissue, organ, organ system, and the organism is arranged from least or smallest to the most or largest complex. Thus, option B is correct.

What is the level of organization?

The level of an organization defines the relationship starting from simple to complex arrangements. It starts with the most simple and small order and further goes up to the complex and largest structures.

The molecules are the smallest structures after an atom that combines to form a cell. The cell is the fundamental unit that combines together to make a tissue that further forms an organ. The different organs combinedly form an organ system and finally an organism.

Therefore, the molecule is the simplest and the organism is the most complex.

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why cellular respiration needed

Answers

Answer:

Cellular respiration is used to create usable energy from the foods that living things eat. It's important to know that the reactions involved in cellular respiration are catabolic, meaning they break down molecules into smaller ones.

Cells do cellular respiration to extract energy from the bonds of glucose and other food molecules. Cells can store the extracted energy in the form of ATP (adenosine triphosphate).
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How do a liquid's properties differ from a Solid's properties?
asappp please

Answers

If suffer means the difference then liquid is the state of liquid (water like substance) and a solid is the state of thickness (you can’t go through it unlike water)

Which of the following correctly explains the difference between mitosis and meiosis?

Answers

Answer:

Below is a definition of the distinction between mitosis as well as meiosis.

Explanation:

Mitosis:

The genetic information (DNA) in something like a cell throughout mitosis has been duplicated as well as split evenly into two cells. An orderly sequence of circumstances known as the cell cycle moves through it's dividing cell.

Meiosis:

Meiosis seems to be the mechanism whereby the gametes throughout sexually reproducing individuals are produced. Gametes have been formed in gender gonads and just like the new cells, constitute two complete sets of chromosomes.

Which process works with erosion to break down rock?

deposition
settling
transportation
weathering

Answers

The correct answer would be weathering. Can u give brainiest

Weathering is the process that works with erosion to break down rock. Thus, option D is correct.

What is weathering?

The rock particles has that are to be broken down inside the weathering method are moved to some other place within the course of the erosion. For this particular reason, weathering as well as the erosion paintings collectively reshape Earth's panorama. The technique of the bodily breaking down the rock.

Weathering has the breaking down or dissolving of the rocks and minerals on this planet's ground. once the rock has been damaged down, the method known as the erosion transports the bits of rock and minerals away. Water, acids, salt, flora, animals, and adjustments in temperature are all sellers of weathering and erosion.

The rock particles that has been broken down into or inside the weathering method are moved to some other place within the course of erosion. Weathering and the erosion paintings collectively reshape Earth's panorama. The technique of bodily breaking down the rock.

Therefore, Weathering is the process that works with erosion to break down rock. Thus, option D is correct.

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12. The carbon cycle goes through living systems in the process of:
A) decomposition
B) respiration
C) photosynthesis
D) all of the above
13. During respiration, the herbivore in Figure 4. uses food and oxygen

Answers

Answer: D

Explanation: It goes through all that were listed.

What other effects does the shortened dystrophin have on a cell?

Answers

Answer:

Skeletal and cardiac muscle cells without functional dystrophin become damaged as the muscles repeatedly contract and relax with use.The damaged cells weaken and die over time,causing the charasteristic muscle weakness and heart problems seen in Duchenne and Becker muscular dystophy.

Which basic function of life is exemplified when a single-celled organism uses its eyespot to sense light?

Answers

Answer:

Responding to changes in its environment

Explanation:

Light is an environmental factor and being able to sense and react to environmental changes is a function of life

Answer: responce to stimuli

Explanation:

if genes are on different chromosomes, the law of independent assortment states that -

gene pairs always stay together

half an organism's gametes have one allele per pair

gene pairs segregate randomly and independently of each other.

one allele is always dominant

Answers

Answer:

Gene pairs segregate randomly and independently of each other.

Explanation:

Genes are the basic units of hereditary and are located on chromosomes. According to Gregor Mendel's law of independent assortment  which states that the alleles of two (or more) different genes are sorted into gametes independently of one another. This means that the allele a gamete receives for one gene does not influence the allele the same gamete receives for another gene.

For example, in a the pea plants used by Mendel in his studies, the genes for seed shape and flower color were inherited independent of each other by the offspring of the parent pea plants. Therefore, Mendel concluded that the inheritance of each trait was independent of the other.

Answer:

gene pairs segregate randomly and independently of each other

Explanation:

According to the Law of Independent Assortment, if two genes are on different chromosomes, then the alleles for these genes separate independently of each other during the formation of eggs or sperm.

This means that genes separate independently of one another. This explanation most closely matches C) gene pairs segregate randomly and independently of each other.

Which of the following determines a cell's function?
A Its environment
B Its Location
C Its size
D Its structure ​

Answers

the environment Bc they need nature and protein

Answer:

it's environment

Explanation:

its nature

Which gas is produced by photosynthesis?
OA.
oxygen
OB.
B. hydrogen
OC.
nitrogen
OD D.
argon

Answers

Oxygen ( and glucose ) is produced by photosynthesis and humans do cellular respiration in which we give off the CO2 plants need :)

Write a brief report on the common turtles found along the United States coastline nearest to you. Also write about the measures taken to protect them

Answers

Explanation:

Scientists recognize seven living species of sea turtles, which are grouped into six genera. Each sea turtle has both a scientific name and a common name. The scientific name identifies the genus and species, and the common name typically describes some characteristic of the turtle’s body.

Different species of sea turtles like to eat different kinds of food. Sea turtles have mouths and jaws that are specially formed to help them eat the foods they like. And each species of sea turtle eats, sleeps, mates and swims in distinctly different areas. Sometimes their habitats overlap, but for the most part they each have different preferences.

Scientists have evidence that Glossopteris was found in what is now India, Antarctica, Australia, and Madagascar. What does this tell you about the position of the continents 225 million years ago?

Answers

Answer:

these continents were joined as a single landmass  

Explanation:

Alfred Wegener proposed the 'Continental Drift Hypothesis' which stated continents were joined into a single great landmass called Pangaea. Pangea was a supercontinent that was assembled during the late Paleozoic and early Mesozoic eras, from about 330 to 200 million years ago. During the early Mesozoic, Pangea began to separate into continents observed today. It is for that reason that the same fossils can be found in very different geographic-climatic regions, evidencing that in the past continents were joined into larger landmasses.

Scientists have changed the model of the atom as they have gathered new evidence. One of the atomic models is shown below.

What experimental evidence led to the development of this atomic model from the one before it?

A few of the positive particles aimed at a gold foil seemed to bounce back off of the thin metallic foil.
Experiments with water vapor showed that elements combine in specific proportions.
Equations were used to identify regions around the nucleus where electrons would likely be.
Cathode rays were bent in the same way whenever a magnet was brought near them.

Answers

Answer:

The answer is C

Explanation:

I was correct at first but then chanaged my answer when someone said it was a :(

A few of the positive particles aimed at a gold foil seemed to bounce back off of the thin metallic foil. Therefore, option (1) is correct.

The gold foil or Rutherford scattering experiment showed that the atom has a small, compact, positively charged nucleus. The gold foil deflected few alpha particles, indicating that the atom is primarily empty space. A small percentage of particles deflected or bounced back, revealing a concentrated positive charge in a limited region of the atom.

This led to Ernest Rutherford's atomic model, often known as the planetary model, where the atom has a tiny, positively charged nucleus at the centre and mostly empty space where electrons orbit it. Therefore, option (1) is correct.

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Your question is incomplete but your full question was:

Scientists have changed the model of the atom as they have gathered new evidence. One of the atomic models is shown below.

What experimental evidence led to the development of this atomic model from the one before it?

A few of the positive particles aimed at a gold foil seemed to bounce back off of the thin metallic foil.Experiments with water vapor showed that elements combine in specific proportions.Equations were used to identify regions around the nucleus where electrons would likely be.Cathode rays were bent in the same way whenever a magnet was brought near them.

If your going to use google at least put it in your own words because I will know if u didn't What is associated gas?

Answers

Explanation:

natural gas found in same reservoir as crude oil

Which one of the following is a density-dependent limiting factor for a group of rattlesnakes?

A) Amount of prey

B) Surrounding temperatures

C) Amount of precipitation

D) Soil quality

Answers

Answer:

... A disease resulting in the deaths of one third of a dense population of bats in a cave would be a

If you construct a model that places a cell with an internal salt concentration of 0.02 M in an aqueous solution that has a salt concentration of 0.015 M, what would cause the cell to lose internal pressure?

a. Active transport of water against the gradient
b. Diffusion of water with the pressure gradient
c. Osmosis of water flowing from where the solute is least concentrated
d. Passive transport of water with the gradient

Answers

I’m pretty sure I think the answer is A the first answer

A model that places a cell with an internal salt concentration of 0.02 M in an aqueous solution that has a salt concentration of 0.015 M would be because of the Active transport of water against the gradient. It is transported from the condition of high osmolarity to a solution of lower osmolarity.

What is active transport ?

Active transport is the process which is helped up by the active ions and active channels that help to maintain the balance and transportation of molecules in the membrane.

The concentration mentioned in the equation is the concentration that is like the concentration of higher osmolarity and the flow will continue to the concentration of lower osmolarity across the semi permeable membrane. Water is transported against its concentration gradient.

Diffusion is the movement of higher concentration to the lower concentration through a semi permeable membrane. Osmosis is opposite to it.

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The space outside the nucleus of an atom contains?

A) protons
B) electrons
C) neutrons
D) protons & neutrons

Answers

Answer:

Electrons

Explanation:

Electrons are always outside the neucleus of an atom. The rest are stored inside.

Electrons—Unlike protons and neutrons, which are located inside the nucleus at the center of the atom, electrons are found outside the nucleus.

Hunter’s velocity was 4.5 m/s. At the end of his race, his velocity was the same. Which best describes his movement?

His movement stopped.
His acceleration is zero.
His time was constant.
His acceleration was positive.

Answers

Considering the definition of acceleration, since the speed does not change, his acceleration is zero.

Definition of acceleration

A body has acceleration when its speed varies over time, either in magnitude or in direction.

In other words, the acceleration of a body is a physical magnitude that indicates the variation in speed experienced by a body in its displacement as a function of the time spent on it.

Therefore, a moving body is changing acceleration as its speed changes. As speed is a magnitude that considers the speed of a mobile and its direction, the changes that occur in speed will be due to variations in speed and/or direction.

Hunter’s movement

Hunter’s velocity was 4.5 m/s. At the end of his race, his velocity was the same. Since the speed does not change, his acceleration is zero.

Finally, the correct answer is second option.

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Answer:

B) his acceleration is zero.

Explanation:

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You and your friend each grab a cup of chocolate milk. Your friend says, "This feels hot". However, you think that it feels cold. Explain how this difference could be possible.

Answers

Answer:

Explanation:

The difference could be possible because heat is transfer. When my grabbed a cup of chocolate drink, heat is transfer from the cup to my friend's body through a form of heat transfer called conduction.

Conduction is a type of heat transfer where heat is transfer between close atoms or molecules by collision. It o cur between solid and liquids that are close together.

While when I grabbed the cup, there is no form of heat transfer from the cup to my body.

What does wood combine with when it is burned?

a. Carbon dioxide
b. Oxygen
c. Water
d. It doesn’t combine with anything

Answers

Answer:

oxygen

Explanation:

o2 is needed to make fire

What are the four stages in a fly's life cycle from beginning to end? *

Larva - Egg - Adult - Pupa
Egg - Larva - Adult - Pupa
Adult - Pupa - Larva - Egg
Egg - Larva - Pupa - Adult

Answers

The Last option ( egg- larva-pupa-adult).

The shape of each of the molecules is important because

Answers

Answer:

The shape of a molecule is important because it is a feature that often determines the fate of a compound regarding molecular interactions.

Explanation:

Answer:answer is 2

Explanation:

What is meningitis? (ANATOMY)

Answers

Answer:

Inflammation of brain and spinal cord membranes, typically caused by an infection.

Meningitis is usually caused by a viral infection but can also be bacterial or fungal. Vaccines can prevent some forms of meningitis.

Symptoms include headache, fever, and stiff neck.

Depending on the cause, meningitis may get better on its own, or it can be life-threatening, requiring urgent antibiotic treatment.

Explanation:

Answer:

Inflammation of the brain and spinal cord membranes, typically caused by an infection.

Explanation:

Meningitis is usually caused by a viral infection but can also be bacterial or fungal. Vaccines can prevent some forms of meningitis.

Symptoms include headache, fever, and stiff neck.

Depending on the cause, meningitis may get better on its own, or it can be life-threatening, requiring urgent antibiotic treatment.

- <3, xo,nm

What name is used to refer to the outer most shell of a Bohr diagram?

A) valence
B) nucleus
C) ionic
D) covalent

Answers

Answer:

A) valence

Explanation:

Remember valence electrons?

A) valence. This is the answer.

PLEASE Help me and use the paper i put in the photo for the answer
Give at least 2 examples of the crucial roles enzymes do for the body

Answers

Answer:

Explanation:

the enzymes in your body help to perform very important tasks. These include building muscle, destroying toxins, and breaking down food particles during digestion. An enzyme's shape is tied to its function. Heat, disease, or harsh chemical conditions can damage enzymes and change their shape

How can each copy of DNA at the end of replication be compared?
A. Each copy is identical to each other
B. Each copy is different from each other
C. They are 90% similar
D. They are 50% similar

Answers

Answer:

At the end of DNA replication, each copy is identical to each other (option A).

Explanation:

The concept of DNA replication implies that, from an original molecule, two identical molecules are obtained.

DNA replication is based on a semi-conservative model, since the double strand is separated, and each strand serves as a mold for the synthesis of a new strand. At the end of the replication, two identical DNA molecules will be obtained, each consisting of an original strand and a new one.

The best evidence that the replication process results in two identical molecules is that, otherwise, an individual's genetic information could vary, which does not happen.

The other options are not correct because:

    B. The copies cannot be different.

    C and D. They are 100% identical, not partially (50 or 90%) similar.

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Read the origin of the word illicit.From the Latin in- ("not") and the Latin -licitus("allowed")Based on this information, what is the meaningof illicit in paragraph 2?A. not knownB. not expectedC. illegalD. Unordinary Rewrite each linear equation in standard form. Then, state the values for A, B, and C.0.09x-0.01y=0.39 _____A=_______,B= _______,C= _______ The smallest particle in the universe?A grain of salt is small, but you can always make it smaller. Imagine cutting that grain of salt into two pieces. Now cut it again and again. Soon, you can't see the smaller pieces with your eyes, but the salt is still there. You finally cut the salt down to the very tiniest piece of salt there is. But even that tiny piece contains smaller particles. Those tiny particles are atoms. Atoms make up everything in the visible universe from galaxies to even yourself. Atoms are so incredibly small that you could line up 50 million in a row and the line would only be about 1 centimeter (less than half an inch) long. Still, scientists have found things that are smaller than atoms. And they are looking for more. If they find the smallest things in the universe, they'll better understand how the universe actually works. But it took some time before people discovered the world of the truly small.The Universe Gets SmallerGrains of sand or dust were once the smallest things actually seen on Earth. By the 1600s, several inventions opened up brand new worlds to curious minds. These included lenses that could make things look clearer and bigger. Another early invention was the microscope. Some people used the microscope to observe and write about the tiniest things they could see.In the 1670s, a Dutch lens maker named Antonie van Leeuwenhoek built himself a microscope. It magnified things more than 200 times. Van Leeuwenhoek discovered a world of tiny living things that he called tiny animals. Van Leeuwenhoek figured they were about 1/38th the size of a grain of sand. Today we know that what he saw were bacteria, the smallest living things on Earth. But atoms are much, much smaller. You can't see atoms with an ordinary microscope.And SmallerThe idea that tiny, unbreakable particles make up everything that exists is more than 2000 years old. The Greek thinker Democritus called these particles "atomos." This is the Greek word for "uncuttable."Scientists didn't return to the idea of atoms until the 1800s. At first, scientists thought atoms were tiny balls with some electrical charges inside. They also thought atoms were the smallest particles that existed.But scientists soon began to wonder if atoms might be made of smaller things. In 1897, British scientist J. J. Thomson proved that they were. He ran experiments and discovered the electron. This tiny particle has a negative electrical charge and whizzes around inside the atom. A graphic showing the basic atomic structure of three elements, hydrogen, helium and oxygen. Protons, neutrons and electrons are shown.Zoom-inDifferent elements have different numbers of protons, neutrons, and electrons.The Smallest ThingsSo FarScientists were soon discovering more inside the atom. Hiding in the atom's center is the tiny nucleus. (If an atom were the size of a racetrack, the nucleus would be about the size of a pea in the middle.) The nucleus contains two types of particles: protons and neutrons. Protons have a positive electrical charge while neutrons have no charge. They contain even tinier particles called quarks that are so unimaginably small that they have no internal structure. Quarks and electrons are the smallest particles found so far. Scientists call the smallest things they've found fundamental particles. Fundamental particles do not contain any smaller particles. 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