Plants release oxygen into the
atmosphere by...
A. Splitting apart water molecules
B. Splitting apart carbon dioxide
C. Attaching water together
D. Attaching oxygen together

Answers

Answer 1

Answer:

A

Explanation:

Plants use water in the process of photosynthesis, (to make food) but they don't need all of it. They use carbon dioxide, the stuff people and animals breath out, and release oxygen for us to breath, then we breath out carbon dioxide again and the process happens again.

Fun fact: Did you know that rain forests make their own weather? Plants not only release oxygen into the air, but tiny droplets of water. (water vapor, and this part of the water cycle is called transpiration) Those droplets condense and form clouds. That's why it rains every day in tropical forests. Cool huh?

Answer 2
B. Splitting apart carbon dioxide molecules
Oxygen molecules are made of 2 oxygen atoms which are separated from the carbon atom from carbon dioxide

Related Questions

can someone please help me ..

Answers

Answer:

Its poop mark me brainliest and have a good day (:

Explanation:

please help me I’ll give you brainliest Please tell me please help

Answers

energy from the sun- fission
photosynthesis is #6
energy is # 5
nucleus is # 4
Atom is # 2
combustion is # 1

Explanation:

[tex]same \: as \: above[/tex]

The nitrogen cycle is an example of a(n) (blank) cycle. The options are biogeochemical, decomposer, energy, water, denitrification, nitrogen fixation, nitrogen limitation, or photosynthesis.

Answers

Answer: Biogeochemical, Nitrogen Fixation, and Denitrification


Explanation: A biogeochemical cycle is the cycling of a nutrient through the biosphere and the geosphere. Nitrogen fixation happens when Nitrogen Fixating bacteria take in atmospheric nitrogen and release Ammonia as a biproduct. Denitrifying bacteria then take in the ammonia and break it down into nitrite, nitrate, and finally back into atmospheric nitrogen. The cycle then repeats.

The nitrogen cycle is an example of a biogeochemical cycle. The correct option is A.

What is biogeochemical cycle?

The transport and transformation of chemicals in ecosystems is referred to as a biochemical cycle. Wetland hydrologic conditions have a strong influence on these.

These processes cause changes in the chemical forms of materials as well as material movement within wetlands.

These cycles transport the elements required for life to survive throughout the ecosystem.

They are essential because they recycle and store elements, as well as regulate vital elements through physical facets.

A biogeochemical cycle describes how an element or compound, such as water, moves between its various living and nonliving forms and locations in the biosphere.

Water, carbon, nitrogen, phosphorus, and sulfur cycles are all important biogeochemical cycles for living organisms.

Thus, the correct option is A.

For more details regarding biogeochemical cycle, visit:

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timeline of genetics

Answers

Answer:

Explanation:

5000 BC

Demonstrating some understanding of inheritance, humans worldwide begin to selectively breed more useful varieties of livestock and crops, including wheat, maize, rice and dates

400 BC

Greek philosophers contemplate the mechanisms of human inheritance. Aristotle believes that traits acquired during life, such as injuries, can be passed to offspring. He also develops the theory of “pangenesis”, which attempts to explain how these traits are transmitted via particles called “gemules” to the reproductive cells

1859

Charles Darwin, himself a proponent of pangenesis, publishes On the Origin of Species – his explanation of evolution by natural selection. Darwin provides a plethora of evidence on how valuable traits become more common in a population, but does not provide any explanation for the mechanism of transmission of these traits

 1866

Augustinian monk Gregor Mendel publishes his work on the patterns of inheritance in pea plants. His meticulous studies mark the birth of modern genetics. Mendel’s findings escape the notice of other researchers for over three decades

1882

Chromosomes are discovered by German biologist Walter Fleming, and named with the Greek prefix meaning “colour” because they become stained when cells are dyed

1902

Mendel’s research is rediscovered by botanists in 1900. US and German cell biologists then independently notice the link between Mendel’s “units of inheritance” and chromosomes. They conclude that hereditary information is contained within chromosomes

1905

The term “genetics” is created by British biologist William Bateson. The terms “gene” and “genotype” surface in 1909.

Sex chromosomes are discovered following work on butterflies and beetles

1910

US scientist Thomas Hunt Morgan is the first to discover a sex-linked trait, while studying the fruit fly Drosophila. The trait for eye colour, on the X chromosome, is also the first gene to be traced to a specific chromosome

1925

Studies show that X-rays can induce mutations in the genetic material

1944

A trio of US geneticists revisit work from the 1920s and prove that, in bacteria, DNA is the hereditary material, and not protein as was previously suspected

1951

Clear X-ray diffraction images of DNA are captured for the first time by British researcher Rosalind Franklin

1953

Building on Franklin’s work, biochemist James Watson and biophysicist Francis Crick at Cambridge University, UK, determine the now famous double-helix structure of DNA. They are awarded a Nobel prize in 1962 for their efforts.

1961

Crick and South African geneticist Sydney Brenner report that trios of DNA bases – called nucleotides – each hold the instructions for one of the 20 amino acids that combine to form proteins

1973

US researcher Herb Boyer uses enzymes to cut DNA and splice it into bacterial plasmids, which then replicate producing many copies of the inserted gene. This heralds the dawn of genetic engineering

1978

Genetically modified bacteria produce the hormone insulin

1983

The gene for an inherited disorder (Huntington’s disease) is mapped to a chromosome for the first time

1986

Kary Mullis in the US develops the Polymerase Chain Reaction (PCR), which allows researchers to produce many millions of copies of DNA molecules in just a few hours

1990

The international Human Genome Project begins, with the goal of sequencing the entire human genetic code

Gene therapy is used successfully for the first time, to treat a four-year-old girl with the rare hereditary immune disorder adenosine deaminase deficiency

1994

FlavrSavr tomatoes, genetically modified to have a long shelf-life is the first GM product to go on sale in the US. GM tomato puree goes in sale in the UK in 1996

1996

Baker’s yeast is the first (non-viral) genome to be completed, followed by the worm Caenorhabditis elegans in 1998 and then the plant Arabidopsis and fruit fly Drosophila in 2000

2000

Completion of the draft human genome is jointly announced by US firm Celera Genomics and the Human Genome Project (an international public consortium). The full sequence – comprising 30,000 to 40,000 genes – is completed in 2003

2003

A tropical fish that fluoresces bright red becomes the first genetically modified pet to go on sale in the US

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what are some environmental effects of open pit mining?

Answers

The effects of open-pit mining and mineral processing plants on the environment include land degradation, noise, dust, poisonous gases, pollution of water, and more hope that help you

Answer:

pit mining exposes rocks that have been buried for millions of years and these rocks are crushed and when they are crushed they release radioactive elements and other air pollutants into the air.

Explanation:

got me 100 on edge

which organism is the site where liptids, proteins, and other materials are assembled for export out of the cell

golgi body

nucleus

ribosome

endoplasmic reticulum ​

Answers

Answer:

endoplasmic reticulum

Answer:

Need greater specificity to determine Golgi Body or endoplasmic reticulum

Explanation:

It's not an organism, both are organelles. The ER is the largest structure and has  smooth and rough bodies with different functions.  The last stop for further assmelby or alteratio is the golgi body.  It's a cellular structure that packages proteins into membrane bound vesicles

how can you use the electron configuration to determine the number of valence electrons

Answers

Valence electrons can be found by determining the electronic configurations of elements. Thereafter the number of electrons in the outermost shell gives the total number of valence electrons in that element.

Here, we are required to explain how the electronic configuration can be used to determine the number of Valence electrons.

The algebraic sum of electrons in the highest energy level in an electron configuration is the number of Valence electrons of the element.

Valence electrons simply refers to electrons present in the outermost shell of an element.

Valence electrons simply refers to electrons present in the outermost shell of an element.The electron configuration is a representation of the arrangement of electrons in the atomic orbitals of an element.

The number of electrons present in the outermost shell as evident from the electron configuration can be used to determine the Valence electron in the elements.

Fir instance: the electron configuration of potassium; 1s² 2s² 2p⁶ 3s² 3p⁵

The algebraic sum of electrons in the energy level 3 therefore is the number of Valence electrons.

Read more:

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please answer fast !

Answers

Answer:

C

Explanation:

C would allow you to understand the cause of why specific people got the disease, and the comparison between those who got it and didn't would be vital in determining why some people got it in the first place.

This diagram shows cellular activity across a cell membrane.
Glucose in high concentrations
outside the cell
100
Cell membrane
till
bu
Glucose in low concentrations
inside the cell
which two processes does this diagram most directly model?

Answers

Homiestasis and transport of molecules

Explanation:I know

match the type of heat transfers to the example​

Answers

Answer:

What example

Explanation:

CONFUSION

What is the name that represents the spread of cancer

Answers

Answer:  metastatic cancer

Explanation:

Metastatic cancer is the answer you’re looking for. Hope this helps!

what is the definition of permeability

Answers

Answer:

the state or quality of a material or membrane that causes it to allow liquids or gases to pass through it.

Explanation:

Hope this Helps:)

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Describe the process of photosynthesis, including a brief description of the light reactions and the Calvin cycle. Be sure to include the materials that are needed for
photosynthesis, the materials produced by photosynthesis, and the role of ATP in photosynthesis.

Answers

Photosynthesis, the process by which green plants and certain other organisms transform light energy into chemical energy. During photosynthesis in green plants, light energy is captured and used to convert water, carbon dioxide, and minerals into oxygen and energy-rich organic compounds.

Wolves prey heavily on beavers in a temperate forest ecosystem. The diet of beavers consists of the leaves, branches and bark from trees, as well as many types of aquatic vegetation. In this relationship, what is the role of the wolves? A producer B decomposer C primary consumer D secondary consumer

Answers

Answer:

In this relationship , the role of wolves is  as Secondary Consumers .

Explanation:

A PRODUCER - Producers are referred to as an organism that prepares its own food. Often, they are called autotrophs.  

All the green plants, for example.

A DECOMPOSER -: Decomposers are organisms which break down organisms and waste that are dead or decaying. Their function is ecologically important as they recycle the nutrients through a natural biological process (decomposition).

Fungi and bacteria that derive their nutrients from dead plant or animal matter are examples of decomposers.

PRIMARY CONSUMERS -: Typically, primary consumers are herbivores-animals that eat plants. Since they have to eat other items to survive, they are called heterotrophs. This is different from farmers who make their own food and are autotrophic.

Insects, mice, and deer are common examples of this type of product.

SECONDARY CONSUMERS -: The secondary consumers are species that eat energy from the primary consumers. Only other animals eat carnivores, and omnivores both eat plant and animal matter.  

You can find secondary users, such as dogs , cats, moles, and birds, in temperate areas , for example. Foxes, owls, and snakes are other examples. Examples of secondary consumers that receive their energy from primary consumers by scavenging are wolves, crows, and hawks.

In the given foodchain , the wolves are consuming beavers as their food and beavers consume leaves , branches and twigs as their food. Therefore , it is cleared from the above definations , that leaves and branches consumed by the beaver are  producers(as they are the part of plants ) , the beavers are herbivores dependent on green plants , so they are primary consumers and the wolves who are preying on beavers are secondary consumers as they are carnivores .

Hence, the correct answer is  OPTION D.

What evidence do similarities between fossil bones and modern organisms provide?

Answers

Answer:

It provides evidence for evolution and adaptations

Explanation:

Amoebas obtain food by wrapping the cell membrane around the food particles, creating a vesicle. The food is then brought into the cell. This process is known as ____________.


a. photosynthesis

b. exocytosis

c. endocytosis

d. osmosis

Answers

Answer:

endocytosis

Explanation:

Endocytosis is a cellular process in which substances are brought into the cell. The material to be internalized is surrounded by an area of cell membrane, which then buds off inside the cell to form a vesicle containing the ingested material.

Answer: Your answer is: C. (endocytosis)

Explanation:

WILL AWARD 90 POINTS!!
The light that is absorbed by a green leaf is
A) from the green portion of the electromagnetic spectrum
B) from the red and violet portion of the electromagnetic spectrum.
C) a mixture of green and yellow pigments
D) not used in photosynthsis

Answers

Answer:

B) from the red and violet portion of the electromagnetic spectrum

Explanation:

it is a Chlorophylls

EMERGENCY! PLEASE ANSWER ASAP! ​

Answers

Answer:

they suck up liquid

Explanation:

they drink the other bugs blood (cool huh)

Discuss why liquid water can exist on Earth.

Answers

Liquid water, which is necessary for life as we know it, continues to exist on the surface of Earth because the planet is at a distance, known as the habitable zone, far enough from the Sun that it does not lose its water to the runaway greenhouse effect, but not so far that low temperatures cause all water on the

What do you think the similarities are Between baking a cake and rocks

Answers

Answer:

When the baking temperature reaches 300 degrees Fahrenheit, sugar undergoes what is known as a Maillard reaction, a chemical reaction between amino acids, proteins and reducing sugars. The result is browning, which forms the crust of many baked goods, such as bread and baking a rock will just heat it up

Explanation:

After a cell has been treated with a certain chemical the ribosomes stop functioning. Which of the following would be immediately affected by this change in ribosome function?
A)intracellular transport
B)protein synthesis
C)cellular respiration
D)excretion of metabolic wastes

Answers

Answer:

b

Explanation:

because ribosomes' first job is protein synthesis.

Help i cant figure this out

Answers

The answer to this questions is continental polar air mass. This is because maritime air masses are usually located over water, but continental air masses are over land. And this is a cold air mass. I haven’t learned anything about this before but I did a little research and this is my conclusion. Continental polar air masses are cold, dry and unstable and are usually marked by surface high pressure, cold temperatures and low dew points.

Where do cells get the oxygen, water, and nutrients they
need to function?

Answers

In human: from the blood stream.

The Doppler effect occurs when a source of waves and/or observer move relative to each other, resulting in the observer measuring a different frequency of the waves than the frequency that the source is emitting.

True
Or
False?

Answers

I think it is true
Tell me if I am right or wrong

Which of the following BEST describes the results of the Embargo Act?

Answers

Answer:

there are no options but the embargo act of 1897 was a general trade embargo on all foreign nations

Answer:

The United States government closed all trade with Britain.

Explanation:

which of the following contributes to air pullution

Answers

Air pollution is caused by solid and liquid particles and certain gases that are suspended in the air. These particles and gases can come from car and truck exhaust, factories, dust, pollen, mold spores, volcanoes and wildfires.

Answer:

Anthropocentric Sources

Explanation:

i wish this will be the answer for this question.

what do many green plants have a part that grows up

Answers

Answer:

Chlorophyll gives plants their green color because it does not absorb the green wavelengths of white light. That particular light wavelength is reflected from the plant, so it appears green. Plants that use photosynthesis to make their own food are called autotrophs.

Explanation:

what is the name of worlds largest seed?​

Answers

Answer:

Coco-de-mer palms (Lodoicea maldivica) produce these monster nuts, which are a type of seed. The biggest can tip the scales at up to 18 kilograms (roughly 40 pounds). That's about as much as a 4-year-old boy.

Please mark as brilliant

Answer:

The worlds largest seed is the Lodoicea maldivica seed

Explanation:

search it up on google

Which of the following are included in our solar system?




Black holes


Kuiper Belt


Jupiter


Andromeda


the sun

Answers

the sun and jupiter
Jupiter the sun thats it

Does respiration expend more energy more than photosynthesis?

Answers

Answer:

No,photosynthesis expend more energy than respiration

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