where do babies come from

Answers

Answer 1
when two people meet and have a certain type of intercourse and after a nine month time a child is made in the womans womb and is delivered when fully produced. duhhhhh
Answer 2

Answer:

During a sexual inter course which involves a men a women the men releases sperm from the penis head which travels through the woman vagina making it's way up to the egg which is located in the stomach the sperm will then shoot into the egg and stay there after sometime the baby will start to form which usually takes up to nine months and when the nine months is complete the baby is born

Explanation:


Related Questions

How do birds and dogs both use DNA as instructions for building their bodies even though they are very different organisms? A. their DNA has different lengths B. their DNA have the same nucleotide bases, but in different patterns C. their DNA has different types of nucleotide bases D. their DNA is made of different types of molecules

Answers

Answer:

Their DNA has the same nucleotide bases, but in different patterns.

The R groups of amino acids located on the surface of protein molecules in the interior of biological membranes are ...?

Answers

I believe the answer is A. hydrophobic. Inside the biological membranes are lipids (hydrophobic) molecules. As you may know the membranes are lipid bilayers. In order to place proteins, which are polymers of amino acids, you would need to create an like-to-like environment. The R groups of amino acids will interact with this hydrophobic lipid bilayer environment and will need to display the same characteristics to keep the plasma membrane intact and not cause unwanted disruption. Therefore, R groups of amino acids in biological membranes should be hydrophobic.

The R groups of amino acids located on the surface of protein molecules in the interior of biological membranes are typically hydrophobic. These nonpolar R groups are compatible with the hydrophobic environment of the membrane's lipid bilayer.

Amino acids are the building blocks of proteins and differ from one another by their R groups, or side chains. The chemical properties such as size, polarity, and charge of these R groups determine their interactions and positioning within a protein structure. For amino acids located within the membrane, the R groups must be able to interact with the nonpolar lipid bilayer, which means they are generally hydrophobic. This is because the interior of biological membranes is a nonpolar environment, and hydrophobic R groups will seek to be in this environment to lower the system's free energy. The arrangement of amino acid R groups in proteins contributes to the overall shape and function of the protein, and in the case of membrane proteins, it allows them to stably exist within the lipid bilayer without disrupting the membrane's structural integrity.

Calculate the surface area, volume, and ratio of surface area to volume of an imaginary cubic cell measuring 4 cm on each side.

Answers

SA= 96
V= 64
SA:V = 3:2
Hope this helps(;

Is the stomach inferior or superior to the diaphram

Answers

This question doesn't make sense.
The stomach and diaphram are parts of two completely different biological systems.

The stomach is arranged substandard compared to the diaphragm, meaning it is situated beneath the stomach in the human body. This situating isolates the thoracic pit from the stomach pit.

The muscular organ known as the diaphragm divides the thoracic cavity, which is home to the heart and lungs, from the abdominal cavity, which is home to the stomach and other digestive organs. This implies that the stomach is underneath the stomach in the human body. The cardia, fundus, body, and pylorus are the four main parts of the stomach. The cardia associates with the throat and is likewise found mediocre compared to the stomach. The vault formed fundus sits above and to one side of the cardia yet at the same time stays underneath the stomach.

Which transport process does the cell use to direct the contents of vesicles out of the cell membrane?

A. Endocytosis
B. Diffusion
C. Exocytosis
D. Passive transport

Answers

That process is known as "Exocytosis"

So, option C is your answer.

Hope this helps!

The right option is; C. Exocytosis

Exocytosis is the transport process that the cell uses to direct the contents of vesicles out of the cell membrane.

Exocytosis is a type of active transport in which substances are moved from within a cell to the external part of the cell with the use of cellular energy. In this process, membrane enclosed vesicles that contain cellular substances are moved to the cell membrane. The vesicles join with the cell membrane and their contents is released out of the cell membrane.


a biologist counts the number of zebras in a population each year, and notices an increase in the zebra population. which describes the biologists actions?

graphing

inference

observation

interfacing

Answers

Observation. The biologist has made an observation that the number of zebras has gone up.

The correct answer is observation.

Observation is defined as noticing the process to gain information.The scientists keeps on observing the population of zebra each year and he notices an increase in population and this change was noticed by the scientist because he was observing the change in number of zebra every year.

What Happens when a ATP loses a phosphate group

Answers

When it loses or breaks off it becomes ADP which means energy was release.

B. ADP is formed and energy is released.
C. AMP is formed and energy is absorbed.
D. ADP is formed and energy is absorbed.

What might happen if a cell's plasma membrane is not partially hydrophobic?

Answers

It wont allow cells to enter or leave the cell, since the hydrophobic is what enables it with out thats what it does!

The lack of a hydrophobic region in a cell's plasma membrane would prevent it from being selectively permeable, impairing the cell's ability to control the entry and exit of various substances, which could be fatal to the cell.

The hydrophobic (water-hating) interior of the membrane is critical in allowing nonpolar and lipid-soluble substances to pass through, such as fat-soluble vitamins and small hydrophobic molecules like O2 and CO2. On the other hand, hydrophilic (water-loving) molecules generally require special mechanisms, such as protein channels, to cross the membrane. Without a hydrophobic region, cell membranes would not be able to prevent the entry of harmful materials or the exit of essential materials, leading to cell dysfunction and potential destruction.

if all cells in a multicellular organism have the same set of dna what accounts for the differences among different types of cells in a multicellular organism

Answers

Final answer:

Different types of cells in a multicellular organism have the same DNA but express different genes, resulting in differences in characteristics and functions among them.

Explanation:

All cells in a multicellular organism have the same set of DNA. However, the differences among different types of cells in a multicellular organism are due to the expression of different genes in the DNA. Each cell only 'reads' the portions of DNA that are relevant to its function. This unique genetic expression of each cell is what leads to the differences in characteristics and functions among different types of cells.

Final answer:

Cells in a multicellular organism differentiate into various types due to the selective expression of genes, even though they all contain the same DNA.

Explanation:

Despite all the cells in a multicellular organism containing the same set of DNA, they differentiate into various types of cells with distinct functions and characteristics. This differentiation is a result of gene expression where different genes are turned 'on' or 'off' in each cell. Similar to how actors in a movie all have the same script but only read their parts, cells only 'read' the portions of DNA that are relevant to their roles. As cells differentiate, they not only change in size and shape but also in function, metabolic activity, and more due to the unique genetic expression of each cell type. Even in unicellular organisms, gene expression can vary in response to environmental conditions.

after a cell division each daughter cell has

Answers

The Answer Is 2 Parent Cells

Answer: Daughter cells have the same amount of DNA as the parent cell and a higher surface area/volume ratio than the parent cell.

Explanation:

Cell division is the process by which a cells divide to create two daughter cells. The surface area to the volume ratio gets smaller as the cell gets larger. So the cell has to die or split into smaller cells with favorable surface area/volume ratios. But as cells increase in size, the surface area and volume do not increase proportionally to length. So when a cell increases its diameter, surface area to volume ratio decreases, and this relationship restricts the size of cells.

An example of cell division is mitosis. It involves doubling the DNA and dividing the nucleus into two, so that each daughter cell created receives the same amount of DNA as the mother cell.

Meiosis terminology
Drag the labels from the left to their correct locations in the concept map on the right.

Answers

Final answer:

This detailed answer explains meiosis terminology, including homologous chromosomes, crossing over, independent assortment, and nondisjunction.

Explanation:

When it comes to meiosis terminology, there are several key terms to understand. Let's start with homologous chromosomes, which are pairs of chromosomes that contain similar genes. Crossing over is the exchange of genetic material between homologous chromosomes during prophase I, while independent assortment refers to the random arrangement of homologous chromosomes on the metaphase plate. Lastly, nondisjunction occurs when chromosomes fail to separate correctly during anaphase I or II, resulting in an abnormal number of chromosomes in the daughter cells.

Learn more about Meiosis terminology here:

https://brainly.com/question/34644809

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Final answer:

Meiosis is a two-part cell division process producing haploid gametes, while fertilization combines these gametes to form a diploid zygote. The cycle alternates between diploid and haploid states, with mitosis occurring in diploid organisms for growth and repair.

Explanation:

Understanding Meiosis and Fertilization

The process of meiosis is fundamental in sexual reproduction, facilitating the production of haploid gametes (sperm and eggs) from diploid cells. It comprises two divisions: meiosis I and meiosis II, reducing the chromosome number by half and ensuring genetic diversity. During meiosis I, homologous chromosomes segregate into different cells, while meiosis II resembles mitosis, where sister chromatids segregate. Fertilization then combines these haploid gametes to form a diploid zygote, restoring the chromosome number.

The lifecycle, incorporating meiosis, mitosis, and fertilization, showcases the transition between diploid and haploid states. In diploid organisms, mitosis is the process of cell division that produces genetically identical cells for growth and repair, occurring in somatic (body) cells. Meiosis, on the other hand, occurs in the germ cells to produce gametes. Finally, fertilization merges two haploid cells to start the cycle anew.

Differentiating between haploid and diploid tissues is essential in this context. Diploid cells contain two complete sets of chromosomes, one from each parent, whereas haploid cells contain a single set of chromosomes. In the lifecycle diagrams, such as that of a fern, these can be color-coded for clarity, with meiosis marking the transition to haploid forms and fertilization returning to the diploid state.

The image shows a bean-shaped bacterium with long tail-like projections streaming from it.

What morphology is represented in the picture?

spirilla

rod shaped

filamentous

cocci

Answers

I'd also say that the morphology presented in this picture is filamentous.
The reason for my believing this is that filamentous morphology concerns long visible chains, threads, or filaments, which you can see in the image.

Answer:

the answer above is wrong. the right answer is rod shaped I took the test

Explanation:

Over time what could happen to an underwater island that forms near a mid-ocean-ridge

Answers

The plates will move and the underwater island will start to move and shift. It's possible it will also weather

Final answer:

An underwater island near a mid-ocean ridge may evolve over time; starting as a fringing reef, it can develop into a barrier reef, lagoon, and eventually an atoll due to sea-level changes and land subsidence. Volcanic activity at mid-ocean ridges could also lead to the emergence of new islands from seamounts.

Explanation:

Over time, an underwater island near a mid-ocean ridge may undergo significant changes due to factors such as sea-level changes, tectonic subsidence, and volcanic activity. Initially, a fringing reef could form around the island. If the sea level remains stable and the land doesn't subside, the reef might not evolve further. However, if the land undergoes subsidence, the reef may grow upwards, eventually forming a barrier reef and then a lagoon as the island sinks.

Ultimately, if the island submerges completely, an atoll may emerge. Separately, ongoing volcanic activity associated with mid-ocean ridges can lead to the creation of new seamounts, which might eventually break the ocean surface to become a new island. Additionally, the constant accumulation of biogenic sediments could potentially deform the oceanic crust, potentially causing new volcanic activities.

Decomposers play a part in the earth biodiversity

Answers

Decomposers break down dead or decaying organisms, and in doing so, convert their basic materials into forms more useful to the biological community, particularly plants. The main decomposers in the environment include bacteria, fungi and worms. Each of these plays a different, but overlapping, role in decomposition

Using figure 5-1 to determine what a soil is called if it has 20 percent clay 60 percent silt and 20 percent sand.
1.C 2.D 3.A 4.C 5.D 6.B 7.C 8.B 9.A 10.A 11.B 12.C 13.B 14.C 15.D 16.D 17.D 18.B 19.D 20.D 21.C 22. Mechanical weathering 23. Carbon dioxide 24. Water table 25. Pollution 26. Acid rain 27. Look up water cycle or review figure 6-1. Give me a thanks and give me a 5-star rating. 100% on unit 5 lesson 9 unit test

Answers

Thank you for posting your question here at brainly. I hope the answer will help you. Feel free to ask more questions.
Use Figure 5-1 to determine what a soil is called if it has 20 percent clay, 60 percent silt, and 20 percent sand, the answer is Silt loam

i has question were you timed when you did this? and this is for Conexus right?

if 71% of the earth's surface is covered with water, why is water conservation important?

Answers

A big percent of that water is salt water not fresh water
70% of that water isn't drinkable. About 1% of water is drinkable,

All the elements of a family in the periodic table have what feature in common?
A) They all have similar chemical properties.
B) They all have the same number of protons in the nucleus.
C) They are all located in the same horizontal row or period.
D) They all have the same number of electrons in the electron cloud

Answers

A) They all have similar chemical properties.

How many amino acids does a tRNA molecule carry to a ribosome?

Answers

A single tRNA molecule carries 1 amino acid to the ribosome, as it also carries the anticodon that complementary base pairs to the codon on the mature mRNA strand.

Identify the correct order in which breast cancer develops.

Answers

This is the correct order in which breast cancer develops:
1. mutation of normal cells - something has to lead to cancer developing
2. tumor growth - there are more and more tumorous cells 
3. invasion of tissues - more and more tissues and organs become infected
4. metastasis - the formation of new tumors
5. metastatic tumor

A species becoming dependent on another species is

Answers

Wouldn't it be co-adaption?

co-adaption           is the answer

Leaves need to be elevated so they are exposed to sunlight for photosynthesis. Which part of the stem grows to make this possible?

Answers

The answer is apical meristem.

An apical meristem is a meristem tissue found at the tips of branches. When the apical meristem is active, a tree grows in height. By growing in height, leaves will be elevated and that way exposed to the sunlight so the process of photosynthesis can take place.
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