Photosynthesis transfers carbonfrom the nonliving environment to the living environment.
from the cell to the air.
from the water to the cell.
from the nucleus to the mitochondria.

Answers

Answer 1
Answer:

Photosynthesis is the process in plants to make their food. This involves the use carbon dioxide to react with water and make sugar or glucose as the main product and oxygen as a by-product. I think the best answer would be the first statement.

Answer 2
Answer:

Answer: Option A

Explanation:

Photosynthesis is a process that helps the plants to make food by the help of carbon dioxide from the atmosphere and water, nutrients from soil and converts it into glucose in the presence of sunlight.

Atmosphere is a non living component of environment where carbon dioxide is present and it is transferred to plants which is a living component of ecosystem.


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(?)Li2O + (?)H2O → (?)LiOH

Answers

Answer:

Li2O+H2O---->(2)LiOH

Explanation:

you have to balance the equation and not all the blanks have to be filled all the time but if it makes it easier for you in the first 2 question marks you can put a 1 which isnt necessary but if ur a visual person it will help.

hope this helps im litterally learning the same thing as u lol

Answer:

1,1,2

Explanation:

this was correct for me, if it wasnt correct check if youre on the right question

Calculate the volume of each of the following gases at STP 7.6 mol Ar 0.44 mol C2,H3

Answers

For Ar :

1 mol ------------ 22.4 L ( at STP )
7.6 mol ---------- x L 

x = 7.6 * 22.4

x = 170.24 L
-----------------------------------------------------------------
For C2H3:

1 mol ------------ 22.4 ( at STP)
0.44 mol --------- y L

y = 0.44 * 22.4

y = 9.856 L

hope this helps !.



The volume of 0.44 moles of ethylene gas at STP is approximately 10.33 liters.

To calculate the volume of gases at Standard Temperature and Pressure (STP), we can use the ideal gas law:

PV = nRT

Where:

P = Pressure (at STP, it's 1 atmosphere, or 1 atm)

V = Volume (in liters)

n = Number of moles

R = Ideal gas constant (0.0821 L·atm/mol·K)

T = Temperature (at STP, it's 273.15 K)

Let's calculate the volume for each gas:

For 7.6 moles of Ar (argon):

P = 1 atm

n = 7.6 moles

R = 0.0821 L·atm/mol·K

T = 273.15 K

Now, plug these values into the ideal gas law:

V = (nRT) / P

V = (7.6 moles * 0.0821 L·atm/mol·K * 273.15 K) / 1 atm

V ≈ 172.75 liters

So, the volume of 7.6 moles of argon gas at STP is approximately 172.75 liters.

For 0.44 moles of C2H3 (ethylene):

P = 1 atm

n = 0.44 moles

R = 0.0821 L·atm/mol·K

T = 273.15 K

Now, plug these values into the ideal gas law:

V = (nRT) / P

V = (0.44 moles * 0.0821 L·atm/mol·K * 273.15 K) / 1 atm

V ≈ 10.33 liters

For more such question on ethylene gas visit:

brainly.com/question/3929010

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Which type of reaction occurs when nonmetal atoms become negative nonmetal ions?A. oxidation
B. reduction
C. substitution
D. condensation

Answers

Answer: Option (B) is the correct answer.

Explanation:

When an atom gains electrons then it becomes rich in electrons and therefore it acquires a negative charge.

Also, it is known that a reduction reaction is a reaction in which an element gain electron(s).

For example, Br_(2) + 2e^(-) \rightarrow 2Br^(-) is a reduction reaction.

Thus, we can conclude that when nonmetal atoms become negative nonmetal ions then type of reaction which occurs is reduction reaction.

The answer is B. reduction. The atom becoming negative ions means it gains electrons. The reaction which gain electrons is reduction reaction. So the answer is B.

When forces attracting solvent particles to each other are broken what is provided for a solution. 1. Energy for the solute to precipitate
2. Space for the solute in the solvent
3.Inertia for the solute to move into the solvent
4. Nothing is provided

Answers

The correct answer among the choices given is option 2. When forces attracting solvent particles to each other are broken, space is provided for the solute in the solvent. This is one of the steps in the dissolving process of a solute in a solvent.

Answer: Option (2) is the correct answer.

Explanation:

A solution consists of a solute and a solvent. A solute is present in less amount as compared to the solvent in a solution.

When forces attracting solvent particles are broken down then particles of the solvent move away from each other.

As a result, spaces will be formed between the solute particles and solvent molecules can easily react with it.

Thus, we can conclude that when forces attracting solvent particles to each other are broken then space for the solute in the solvent is provided for a solution.

Scientific Notation expresses a value as the product of a number between 1 and 10 and

Answers

... and a power ot ten.

For example: 1,3x10^21 is in scientific notation, but 13x10^20 is not in scientific notation.

Which compound has the strongest hydrogen bonding between its molecules? 1. HBr 2. HF 3. HCl 4. HI

Answers

You can compare the strength of the hydrogen bonding by comparing the electronegativities of the other elements. All the four elements, Br, F, Cl and I belong to the same group in the periodic table: group 17 named halogens. Then the kind of bonding they form is similar: polar covalent. You must know the trend of the electronegativities in the periodic table. Electronegativity decrease when you down across a group. Then the electronegativity of F is the higher of the group (indeed, it is the highest of all the 118 elements) . The higher the electronegativity the stronger the attraction that the halogen attracts the electrons and the stronger the hydorgen bonding. Then, the conclusion is that HF has the strongest hydrogen bonding.
The correct answer is HF