what happens a few days after fertilization (apex)

Answers

Answer 1
Final answer:

After fertilization, the conceptus forms a morula and then develops into a blastocyst that implants into the uterus. The outer cells of the blastocyst become the chorion, which releases hormones to support the developing embryo.

Explanation:

Approximately 3 days after fertilization, the conceptus reaches the uterus and forms a structure called the morula. This compact mass of cells continues to divide and forms a ball of approximately 100 cells, known as a blastocyst. The blastocyst then implants into the wall of the uterus, and the outer cells develop into the chorion, which releases hormones to maintain the endometrium and support the developing embryo.

The blastocyst is a more complex structure, consisting of two distinct cell layers: the inner cell mass, which will give rise to the embryo, and the outer layer called the trophoblast. The trophoblast further differentiates into the chorion, which is a membrane that surrounds the developing embryo.

The chorion plays a crucial role in pregnancy. It releases hormones, including human chorionic gonadotropin (hCG), which helps to support the early stages of pregnancy by maintaining the corpus luteum in the ovary. This ensures a continued supply of progesterone, which is essential for sustaining the uterine lining and supporting the developing embryo.

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Related Questions

What stage of cellular respiration does not involve any carbon-based compounds as a reactant or product? Electron transport chain Krebs cycle Glycolysis Fermentation

Answers

A. Electron transport chani

Answer:

Option A , Electron transport chain

Explanation:

In Electron transport chain(ETC), no carbon based reactant or product are involved.

Usually in ETC (taking place in the inner membrane of the mitochondria), NADH and FADH2 releases high-energy electrons. Some energy of these electrons is capture while passing through the chain. This stored energy is then used for pumping hydrogen ions into the intermembrane space from the matrix.

Since in this entire process no carbon element is involved and hence, option A is correct

what type of molecules diffuse through the cell membrane without using a channel protein ?

Answers

Any molecule that is small enough to fit through can pass through the cell membrane. Other larger cells must pass through specialized protein channels that allow only specific molecules through.  

The molecules diffuse through the cell membrane without using a channel protein are as follows:

Gases (such as O₂ and CO₂), hydrophobic molecules (such as benzene), and small polar but uncharged molecules (such as H₂O and ethanol) are able to diffuse across the plasma membrane. Other biological molecules, however, are unable to dissolve in the hydrophobic interior of the phospholipid bilayer.Ions such as [tex]Na^+, K^+, Cl^-[/tex] can't get through due to their charge.Molecules such as glucose, sucrose, proteins, and starch cannot diffuse through cell membrane due to their large size.

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What would happen to the circulatory system if the muscular system stopped working?

Answers

Hello!

The muscular system is what helps you to breathe, speak, and move. If your muscle systems stopped moving, you would be completely paralyzed and you would eventually stop breathing which would cause no oxygen then no oxygen to the brain, and blood would be lower ultimately causing the circulatory system to fail which would, in turn, kill you. Since the CIrculatory system runs off oxygen to support the heart as well as the other vital organs and the muscular system controls breathing...

I hope this helped!

I am, yours most sincerely,
SuperHelperThingy

The muscular system aids in your ability to move, speak, and breathe.

What is Circulatory system?

You would become entirely paralyzed if your muscular systems stopped working, and you would eventually cease breathing, which would result in no oxygen getting to your brain and decreasing blood pressure, which would finally lead to circulatory system failure and your death.

Since the muscular system regulates breathing and the circulatory system relies on oxygen to support the heart and other critical organs.

Blood arteries in the circulatory system move blood away from and toward the heart. Blood leaves the heart through arteries and returns through veins.

Therefore, The muscular system aids in your ability to move, speak, and breathe.

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I NEED HELP W/ THESE QUESTIONS!!!

Answers

So, I don’t really think these are right, but here’s what I would put down.
2- P
3- C
5- C
9- L
12- L
11- N
10-N
8- P
6- P
4- P?

The subject of this question is biomolecules. In summary, carbohydrates are quick energy sources and are consumed heavily by athletes, proteins are involved in muscle development and the immune system, nucleic acids contain genetic material, and lipids are key for energy storage, insulation, and making up cell membranes.

This is a categorization task about biomolecules. Let's categorize each statement.

1. C: Carbohydrates are useful for a fast source of energy.

2. P: Proteins play a large role in muscle development.

3. N: A mutation in DNA, which is a nucleic acid, would initially start with it.

4. P: Enzymes, which speed up reactions, are proteins.

5. C: Carbohydrates contain elements C, H, and O and can often have a ring-like structure.

6. P: Proteins are involved in the immune system, such as antibodies.

7. N: The category of nucleic acids includes genetic material.

8. L: Lipids are helpful for long term energy storage.

9. C: If athletes 'pasta load,' they are consuming a lot of carbohydrates.

10. L: Lipids make up cell membranes.

11. L: Lipids are important for insulation.

12. L: Lipids contain long fatty acid chains.

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which of these elements is essential to making up all organic molecules?
A. hydrogen
B oxygen
c. carbon
d nitrogen

Answers

Allmost all living things have cells mainly composed of C) Carbon

Answer:

carbon

Explanation:

how are mass and volume alike and what is density?

Answers

Density is defined a mass per unit of volume. Volume is the amount of space that matter takes up and the mass of an object is the amount of matter that is in an object. so them two are alike because they are basically the same thing.
Density is how thick or solid and object is density is used to find the weight or mass of any object. How mass and volume are alike is because of density. Density is mass per volume unit so it helps you if you are finding the volume of a triangle or any shape when finding density of objects make sure you calculate the volume then make sure you calculate the density to help find the answer you are looking for.  

Which of the following terms describes a solution with a higher concentration of dissolved substances relative to another solution?
hypertonic

hypotonic

isotonic

polytonic

Answers

I believe it would be Hypotonic because is a solution in which the water concentration is high and the solute is lower than other solutions

Hypotonic is the term describes a solution that has a lower solute concentration and higher water concentration than another solution Hypertonic describes a solution with a higher solute concentration compared with another solution.

Select all of the answers that apply.
Which statements are true regarding the cosmological principle?
The universe looks the same from all directions, but can change and evolve over time.
The universe looks the same from all directions, and hasn't and won't change or evolve over time.
The universe can't be studied scientifically because scientists can't directly test their hypotheses.
Scientists can study the universe because the cosmological principle suggests that any physical laws or processes are the same for the entire universe.

Answers

A. And D. are the answer aka the first and last one 
first one and last one

if you let all of the liquid evaporate out of the pitcher, would you be able to see the solid particles of the drink mix? Explain

Answers

no the liquid would have already mixed

Explain the statement “ nutrients do not flow in one direction in the ecosystem, they recycle through the ecosystem “

Answers

The nutrients are recycled. They are used by plants and then the animals and insects that eat the plants and then go on to the animals that eat those animals and insects. When an organism dies, the nutrients are given back to the soil to start their journey again.
Final answer:

Nutrients in an ecosystem are constantly recycled and reused through a biogeochemical cycle, involving both living organisms and non-living components.

Explanation:

The statement 'nutrients do not flow in one direction in the ecosystem, they recycle through the ecosystem' means that nutrients in an ecosystem are constantly being reused and recycled. They do not flow in a linear direction but instead go through a cycle, being passed from living organisms to non-living matter and back again. This recycling process is known as a biogeochemical cycle, which involves both the living organisms and the non-living components of the ecosystem.

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A platypus has 26 types of chromosomes. How many total chromosomes would be present in an intestinal cell from a platypus?

Answers

A total of 52 total chromosomes would be present in an intestinal cell from a platypus. Two copies of each chromosome will be found in the somatic cell of the platypus. Ten of the chromosomes will be the sex chromosomes. 

Which description states a characteristic property of the noble gases?

A.
relatively unstable

B.
highly reactive

C.
colorful and shiny

D.
very stable

Answers

The answer is D they are very stable.

The correct option is D.
Noble gases are very stable, because they have eight electrons in their outermost shells. This is called octet form. Other elements that do not have the octet form try to achieve the form by forming bonds with other elements. Because of their stability, noble gas are chemically inert, that is, they do not undergo chemical reactions with other elements.

what is the main component of the cell membrane? a. lipids b. carbohydrates c. cholesterol d. proteins

Answers

The main component of the cell membrane are a. lipids.

The cell membrane controls what comes in or out the cell. The lipids stop too  much water from entering or escaping.

The main component of the cell membrane is lipids, specifically phospholipids. Hence, option a is correct.

Phospholipids form the core structure of the membrane, creating a bilayer that provides the basic fluid framework. However, it's important to note that other elements such as cholesterol, proteins, and carbohydrates also play crucial roles in the function and structure of the cell membrane. Cholesterol, for example, while also a lipid, helps to modulate the fluidity of the membrane and is found alongside the phospholipids. Proteins account for about 50% of the membrane's composition by mass and are involved in various functions such as transport, signaling, and structural support. Carbohydrates, comprising around 10% by mass, are attached to the exterior surface of lipids and proteins, playing key roles in cell recognition and adhesion as components of glycolipids and glycoproteins.

Grasses → mice → cat → coyote As matter and energy move from grasses to coyotes the amount of available energy


a) Always decreases and population size always increases

b) Always increases and population size always decreases

c) Always decreases but population size may increase or decrease

d) Increases or decreases but population size remains the same

Answers

the answer would be C. Energy is used through the food chain so energy always decreases. Population size would commonly decrease according to the  pyramid of food chain but since there's no answer for that, C would be the most suitable

Answer:

The most reasonable answer would be c.

Hope I helped:)

Explanation:

A scientist conducted one trial of an experiment and got unexpected results. How can the scientist increase confidence in the results?

A by repeating the experiment several times
B by changing the experimental procedure
C by asking other scientists what they think about the results
D by modifying the results so they are close to the expected results

Answers

The answer would be A

Answer:

A by repeating the experiment several times

Explanation:

One of the main characteristics of the scientific research is the ability of running the experiments with the same circumstances and context several times, in order to be able to confirm the results of the research and by doing this if sometime a scientist gets a result too far away from the expected he can run again the experiment to see if the experiment wasn´t compromised.

Of the three states of matter, molecules are moving the fastest and are the farthest apart in a _____.


A.Solid


B.Liquid


C.Gas
Please answer fast!

Answers

The answer for this question would be C) Gas or the third option.

Gas granules frequently hit with one another and the container's side as they move fast in all directions. As the temperature rises, the particles accumulate kinetic energy and quicken. Thus, option C is correct.

What are the movement of gas molecules?

As the temperature rises, the particles accumulate kinetic energy and quicken. Due to their kinetic energy, the molecules of a gas, liquid, or solid are always in motion.

The collision of molecules occurs because they are constantly moving. The molecules travel in erratic paths as a result of these encounters.

The temperature and the particles' mass both have an impact on the actual average speed of the particles; at a given temperature, heavier particles move more slowly than larger ones.

Therefore, Of the three states of matter, molecules are moving the fastest and are the farthest apart in a Gas.

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Which one of these is not an example of intercellular communication?

A Bacteria share information about nutrients
B Ribosomes make protein
C Endocrine cells send hormones into blood
D Hypothalamus signals pituitary gland

Answers

The answer is B, Hope this helped!
Answer is B hope this helped :)

explain the importance of ATP at cellular level

Answers

The main role of ATP is to provide energy

energy released is used for metabolism in thecell. Other reactions that require energy from ATP include; active transport/ muscle contraction/ glycolysis.

The four fundamental types of organic molecules are proteins, carbohydrates, lipids, and _____________. Question 14 options: phosphates salts nucleic acids sulfates

Answers

the answer is nucleic acids.

Answer:Nucleic acid

Explanation:

The four Fundamental types of organic molecules are

proteincarbohydrateslipidsNucleic acid

Nucleic acids are bio polymers composed of Nucleotide, very complex and large  organic molecules.Nucleic acid is divided into four different levels

primarysecondaryTertiaryQuaternary

Examples of Nucleic acids are DNA,RNA.

what are the correct labels for this diagram of glucose catabolism

Answers

A. Glycolysis b. 2 atp c. It's d. 34 atp plz mark as brainliest i jus took the test

Final answer:

Glucose catabolism entails breakdown of glucose and other simple sugars to release energy initiated in a process called glycolysis. Energy is extracted and stored in the form of ATP and NADH. The diagram representing this process should include glucose, ATP, NAD+, pyruvate and two stages of glycolysis.

Explanation:

Glucose catabolism, also known as glycolysis, is represented in a diagram showing the breaking down of glucose (a six-carbon sugar) to extract energy. The labels for this diagram would likely include glucose, ATP, NAD+, ADP, P; because glucose, in combination with ATP, NAD+ and inorganic phosphate, breaks down into pyruvate, introducing ATP and NADH. The output of this process is two pyruvate molecules, two ATP molecules, and two NADH molecules.

Another relevant detail here is the incorporation of the simple sugars including galactose, fructose, glycogen, and pentose which are catabolized during glycolysis. Amino acids connect to this process through pyruvate, acetyl CoA, and components of the citric acid cycle. In aerobic conditions, pyruvate enters the Krebs cycle, leading to the production of high-energy FADH2 and NADH molecules which provide electrons to the oxidative phosphorylation process, generating more ATP molecules.

In your diagram, you should also indicate the two phases of glycolysis. The first part includes trapping of the glucose molecule in the cell and using energy to modify it so that it can be split into two three-carbon molecules. In the second phase, energy is extracted from the molecules and stored in the form of ATP and NADH. All these elements make up an accurate diagram of glucose catabolism.

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how have scientists determined the earth's core is composed of iron and nickel?

Answers

The correct option from the given options is: "Scientist have determined the composition of Earth's core by using radiometric dating to examine meteorites".
To date materials the procedure of radiometric dating or radioactive dating is used, for example, rocks or carbon, in which trace radioactive impurities were specifically fused when they were framed. The strategy looks at the abundance of a normally happening radioactive isotope inside the material to the abundance of its decay items, which shape at a known consistent rate of decay.

Final answer:

Earth's core is predominantly iron and nickel, inferred from seismic data, its density compared to the Earth's overall density, and its composition mirroring that of metallic meteorites. The solid inner and molten outer core composition, along with the generation of the Earth's magnetic field, supports a dense, metal-rich core.

Explanation:

Scientists have determined the Earth's core composition through various methods that overlap in the fields of seismology, geochemistry, and astrophysics. Seismic waves, created by earthquakes, have different speeds when they travel through solid and liquid matter, allowing scientists to characterize the inner and outer core. Observations show that the inner core is solid, primarily composed of iron and nickel, while the outer core is liquid, believed to be mostly molten iron potentially mixed with lighter elements such as sulfur and oxygen.

Another critical piece of evidence comes from the overall density of the Earth, as established by its gravitational effects and rotation, which suggests a denser metallic core when compared to the less dense surface layers. Additionally, the similarity in composition to metallic meteorites rich in iron and nickel supports the theory that these heavy elements sank to form the Earth's core during its early formation when the planet was still molten, and density stratification could occur.

Furthermore, the Earth's magnetic field, generated by the motion of electrically conductive material in the outer core, implies the presence of a metallic, iron-rich fluid. Laboratory experiments under conditions replicating the core's environment suggest iron alloys are conductive and match the observed density, thereby confirming a metal-based core and its role in geomagnetic phenomena.

The compound light microscope is most useful for viewing

detailed structures inside of cells

leaves, stems, and molds

surface details of a specimen

tissue samples and cells

Answers

Compound Light Microscope is a type of microscope made up of two lenses to obtain a high resolution of specimens. It has an ocular and objective lens and uses light as the source.

The correct answer is:

Option D. tissue samples and cells

The uses of compound microscopes are:

The microscope is used to visualize the specimen at a high resolution of 400 to 1000 X. It is due to the combined effect of two sets of lenses.

The compound microscope is used to visualize the cells, scrapes, different types of cells, and microorganisms.

Electron microscopes are used to visualize the detailed structure of the specimen, and also provide 3-D images of surface details of the specimen.

Thus, the correct answer is Option D.

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Final answer:

A compound light microscope is most effective at viewing intricate internal structures of cells and tissue samples. By magnifying the specimen's image, elements such as the cell nucleus, mitochondria, and ribosomes can be seen. It can also be used for histology but is not suitable for larger or surface structures.

Explanation:

A compound light microscope is most useful for viewing detailed structures inside cells and tissue samples. It uses a system of lenses to magnify the image of a specimen, enabling us to observe small and intricate internal cellular elements like the nucleus, mitochondria, and ribosomes. However it also has broader applications in histology, the study of tissue structure. Using staining techniques, tissue samples can be thoroughly examined under this type of microscope. It is not as ideal for observing surface structures or larger objects like leaves, stems, and molds as they might be too large to view under this microscope.

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What is the primary energy system to fuel cycling at 70% of VO2 Max for 15 minuets?

Answers

The primary energy system to fuel cycling for 15 minutes is THE AEROBIC GLYCOLYSIS SYSTEM.
There are different energy systems for fueling different types of physical exercise, the type of system that is used depend on the duration of the physical exercise. The energy system that exist are anaerobic glycolysis, aerobic glycolysis, phosphagem system and fatty acid oxidation. The aerobic glycolysis energy system relies on the complete breakdown of glucose. The pyruvate which is the end product of glucose oxidation is further broken down to acetyl coA, which then enters into the citric acid cycle. The aerobic glycolysis energy system is used for physical exercises that last between three to twenty minutes.

The oxidative energy system is the primary source of ATP for cycling at 70% of VO2 Max for 15 minutes, utilizing carbohydrates and fats due to the aerobic nature and duration of the activity.

The primary energy system to fuel cycling at 70% of VO2 Max for 15 minutes is the oxidative energy system. This system is best suited for activities like cycling that last longer than 2 minutes and up to several hours. Although the immediate energy system can generate ATP quickly for explosive activities lasting about 10-20 seconds, such as sprinting, and the anaerobic system can sustain high-intensity activity for roughly 1.3-1.6 minutes, cycling for 15 minutes at 70% VO2 Max falls well into the time range that depends mainly on the oxidative system. This system utilizes carbohydrates and fats to produce ATP, and it becomes the most efficient source of ATP production as the exercise duration exceeds 2 minutes and as the heart rate and breathing rate increase to supply more oxygen to the muscles.

Where in this area would a lake or marsh most likely form? A. A B. B C. C D. D

Answers

It would be B. because marshes are waterlogged and pieces of low-lying land.

I hope this helps!!   :)

Answer:

Option (B)

Explanation:

Lakes and marshes are generally formed in the areas where the elevation is less. They are the region where the water bodies remain stagnant i.e. no flowing of water takes place.  These are not a part of the huge oceans and are usually surrounded by land on all the sides. They can be comprised of salt water or fresh water and are comparatively larger than ponds in terms of size.

Thus, the point B is the most favorable location for the formation of lakes and mashes as it is located near the mean sea level.

Hence, the correct answer is option (B).

Some plants release toxic chemicals that kill or harm nearby plants. What type of example is this?

A. cooperation
B. mutualism
C. competition
D. parasitism

Answers

Your answer would be C: Competition! 

Answer: C. competition

Explanation:

Competition can be define as the ecological relationship in which one species is more superior over the other in deriving resources. In competition usually one species live and the population of other species may either decrease in abundance, or may extinct.

The release of toxic chemicals by the plants to harm nearby plants is an example of competition. This is because of the fact that the plants may face competition with other plants for resources such as sunlight, water and minerals. Therefore, a physiological response will be generated inside the plants so as to kill the neighboring plants.  

A field geologist collected data for two nuggets of copper and determined their density. Which two pieces of equipment did the geologist most likely use to determine the density of the copper nuggets?

Answers

A scale to measure mass and something to measure volume. Not sure what the options are but could just be measuring glass like a beaker and some water to displace.

Answer:

The answer is b

Explanation:

two ways water travels from land to enter the ocean

Answers

-Water evaporates and condenses into clouds, then the clouds are blown over the ocean, and it rains.
-Water from a mountain flows down and into a river. The river empties into an ocean.

Final answer:

Water enters the ocean from land via runoff and groundwater flow, integral parts of the water cycle.

Explanation:

Two ways water travels from land to enter the ocean as part of the water cycle are through runoff and groundwater flow. Runoff occurs when water from precipitation like rain or melting snow flows over the surface of the land and into rivers, lakes, and eventually reaches the ocean. Groundwater flow refers to water that infiltrates the soil, becoming groundwater, which moves through the ground and discharges into the ocean, completing the cycle.

How was the grand canyon formed?

Answers

i want to say it was erotion from water
The specific geologic processes and timing thatformed the Grand Canyon spark lively debates by geologists. The general scientific consensus, updated at a 2010 conference, holds that the Colorado River carved the Grand Canyon beginning 5 million to 6 million years ago.

If Tyler does not eat a diet that includes essential amino acid's hair cells will not be able to build

Answers

If Tyler does not ............................... will not be able to build CERTAIN PROTEINS.
Essential amino acids are those amino acids that the body can not produce on its own and one has to eat food that contain these amino acid in order for it to be available for body use. There are nine essential amino acids, they are histidine, leucine, isoleucine, lysine, methionine, phenylalanine, theronine, tryptophan and valine.

How are kelp holdfasts similar to proper root systems?
A. anchor parts to stable positions
B. carry water to the body
C. carry nutrients from the body
D. use photosynthesis

Answers

How are kelp holdfasts similar to proper root systems? 

The correct answer is c. carry nutrients from the body
It will help you :)

Answer: A

Explanation: Unlike roots, holdfasts do not take in nutrients – they simply anchor the seaweed to a solid structure.

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