12. Which of the following correctly matches an organelle with its function?a. Nucleus: cell respiration
b. Ribosome: manufacture of lipids
c. Central vacuole: storage
d. Mitochondria: photosynthesis

Answers

Answer 1
Answer:

The Organelle that matches its function is Central vacuole: storage

Organelles are small organs located inside the cells of plants and animals, within the cytoplasm providing  specialized and specific functions in order to maintain the cell for the continuity of life.

Some of the major organelles and their specific functions includes

  • Nucleus  - for the control of cellular activities and DNA Storage
  • Endoplasmic reticulum - For protein and lipid syntheses
  • Central vacuole- For storage of salts, minerals, nutrients, proteins.
  • Mitochondrion- Production  of Energy  through cellular respiration.
  • Golgi apparatus -transportation of lipids.  
  • Ribosomes: Responsible for Protein synthesis.

Therefore, saying

Nucleus: cell respiration

Ribosome: manufacture of lipids

 Mitochondria: photosynthesis    are all wrong

See more here:brainly.com/question/19275815

Answer 2
Answer:

Answer:

C

Explanation:


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The hydrilla, a non-native species of the Hudson River Estuary, has begun to grow along the surface of the water and spread throughout the watershed. Which of the following is true of the hydrilla growing in the Hudson River Estuary?The hydrilla will be a helpful in increasing the number of phytoplankton in the water.
The hydrilla will increase the amount of natural plant growth in the estuary.
The hydrilla is an invasive species, and its presence will have an overall negative effect on the estuary.
The hydrilla needs to be trimmed back every year.

Answers

The right answer for the question that is being asked and shown above is that: "The hydrilla is an invasive species, and its presence will have an overall negative effect on the estuary." This is the statement that is true of the hydrilla growing in the Hudson River Estuary.

Adenosine Triphosphate Living organisms store chemical energy in the form of biomolecules. Organisms transform these biomolecules to other forms of energy when needed. For example, chemical energy is transformed into mechanical energy when a muscle uses energy to move. Adenosine triphosphate (ATP) is the most important biomolecule that provides chemical energy. ATP is like a storage unit of chemical energy for the cell. It’s the most abundant energy-carrying biomolecule in cells. The structure of ATP consists of a nucleotide made of an adenine base, a ribose sugar, and three phosphate groups. ATP releases energy when the second and third phosphate molecules are broken, forming adenosine diphosphate (ADP). ADP can also form adenosine monophosphate (AMP), but this reaction releases less energy than the reaction that converts ATP to ADP.

Answers

Answer:

Adenosine triphosphate (ATP) is an essential biomolecule that stores and provides chemical energy in living organisms. It acts as a "currency" for energy transfer within cells. Let's break down its structure and function:

1. Structure: ATP is composed of three main components:

a. Adenine base: It's a nitrogen-containing molecule that serves as a building block of nucleotides.

b. Ribose sugar: This is a five-carbon sugar molecule that is bonded to the adenine base.

c. Phosphate groups: ATP has three phosphate groups attached to the ribose sugar.

2. Energy Storage: The energy in ATP is stored in the bonds between the phosphate groups. These bonds are high-energy bonds, meaning they contain a lot of potential energy.

3. Energy Release: When the cell needs energy, ATP can be hydrolyzed, or broken down, by removing one phosphate group. This results in the formation of adenosine diphosphate (ADP) and an inorganic phosphate molecule. The breaking of this bond releases energy that can be used by the cell for various processes.

4. Recycling ATP: ADP can be further hydrolyzed to form adenosine monophosphate (AMP) by removing another phosphate group, but this reaction releases less energy compared to the conversion of ATP to ADP. ATP can be regenerated by adding a phosphate group back to ADP through a process called phosphorylation. This recycling process allows ATP to continuously provide energy within the cell.

To summarize, ATP is a molecule that stores and provides chemical energy in cells. It consists of an adenine base, ribose sugar, and three phosphate groups. Energy is released when ATP is converted to ADP by breaking the bond between the second and third phosphate groups. ADP can be further converted to AMP, but with less energy release. Through phosphorylation, ADP can be converted back to ATP, ensuring a continuous supply of energy for cellular process

What are the solution (s) to quadratic equation X2-25=0?

Answers

Answer:

Solution to the given quadratic equation is +5 and -5.

Explanation:

Quadratic equation: These are equation with degree 2 power of variable is squared. they are generally in the form :

ax^2+bx+c=0

The given quadratic equation:

x^2-25=0

x^2=25

x=√(25)

x = ± 5

Solution to the given quadratic equation is +5 and -5.

that should be x^2-25=0, which is x^2= 25, x=5 x= -5

This cell is a prokaryote. Which evidence could be used to support this classification?

Answers

it has no nucleus and no membrane bound organelles

Answer: circular DNA

Human impact on ecosystems would most likely lead to secondary succession over primary succession.Please select the best answer from the choices provided
T
F

Answers

Answer:

The given statement is true.

Secondary succession refers to the series of community changes that take place on previously established but damaged or disturbed habitat.

It helps in reviving or re-establishment of the similar ecosystem that previously existed.

It starts by a disturbing event such as natural disaster (hurricane, tornado, earthquake et cetera) and human interventions (deforestation, accidental forest fires caused by human activities, habitat destruction due to mining or dam construction et cetera) which greatly reduce the ecosystem already established.


The Statement would be true stated by the definition

Aim on how does the dominant hand and non-dominant hand react to stimulus

Answers

The dominant hand will most probably be faster to react and will also react more strongly in comparison to the non-dominant hand. The reason for this is that our dominant hand tends to be better at reacting towards stimuli in comparison to our non-dominant hand.