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zepelin [54]
3 years ago
10

What is the answer for this?!!!

Biology
1 answer:
MrRissso [65]3 years ago
8 0

Answer:

Your answer is B).

Explanation:

If the pH is somewhere around 6.0 when the seeds have been placed, then the flowers will be pink, even if later on you try to change to pH levels of the soil, there will be very little change in the color of the flowers.

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Which of these processes is most important for a person to replace worn-out body cells?
yulyashka [42]

Answer:

Mitosis

Explanation:

Mitosis produces new cells, and replaces cells that are old, lost or damaged for a person's body cells.

4 0
3 years ago
When the cell cycle is disrupted, cells can grow and divide uncontrollably. what makes cancer cells different from normal, non-c
Alex17521 [72]

When an oncogene is turned on and is not balanced through suppression of tumor suppressor gene, the normal cells become cancerous and divides unregulated. Normal cells differentiate while cancer cells do not. Additionally, while normal cells respond to endocrine and paracrine signals from neighboring cells, cancer cells do not. Cancer cells have malfunctioned apoptosis process due to a malfunctioned p53 tumor suppressor gene. Therefore they continue to divide even when they have damage to their DNA. Cancer cells metastasize because, unlike normal cells, they do not produce an adhesive molecule that allows the cells to adhere to one another to form tissue.





3 0
3 years ago
What Macromolecules does the skeletal system require to function properly?
padilas [110]

Answer:

The major components of bone tissue at the molecular scale are minerals, water, collagen, and other proteins. At the next level of organization, small crystals of hydroxyapatite made of calcium and phosphate are embedded within collagen fibers to produce a composite (blended) material with high compressive and tensile strength.

The skeletal system protects and supports vital organs, allows our body to move, stores important minerals, and produces blood cells. There are several chemical elements and molecules required to maintain the many functions of the skeletal system. The chemical properties of these components support bone structure and function. On a chemical level, bone is divided into inorganic and organic (carbon-containing) components.

The primary inorganic components of bone are:

calcium, which is required for many functions throughout the body;

phosphorus (in the form of phosphate ions), which is a component of buffer systems and energy-rich molecules; and

water, which contributes to the compressive resistance of bone and contributes to the fluid matrix of bone.

The primary organic components of bone are:

collagen, the major structural protein (type I in bone and type II in cartilage); and

proteoglycans, which are negatively charged glycosylated proteins (glycosylated means having carbohydrate sugar groups modifying the protein).

Bone is approximately 60 to 70 percent inorganic mineral and 10 percent water by weight. The remaining 20 to 30 percent of bone is organic matrix (osteoid), such as collagen and proteoglycans. Your body contains 1 to 2 kilograms of calcium and nearly 600 grams of phosphorous. Nearly 99 percent of the calcium and 86 percent of the phosphorous is stored in your bones.

Inorganic Components of Bone

Calcium ions (Ca2+) are stored in bone tissue, but can be released into the bloodstream when blood levels fall below optimal. Blood calcium is important for muscle contractions, nerve impulses, and blood clotting.

In bone, phosphorous (P) is found in the form of phosphate ions (H2PO4–). Outside of bone, phosphorous plays roles in energy storage (such as in ATP), and is required for the formation of DNA and RNA. Therefore, it is required for cellular growth, maintenance, and tissue repair.

When combined with hydrogen, phosphorous forms dihydrogen phosphate ions (H2PO4–). Dihydrogen phosphate acts as a buffer to maintain a constant pH balance by acting as either a hydrogen ion donor (acid) or a hydrogen ion acceptor (base). In all cells, a constant pH must be maintained to carry out cell functions.

Explanation:

6 0
2 years ago
Which is the MOST accurate description about how green plants and animals get food?
irga5000 [103]

One question is this supposed to be multiple choice?

This probably wont be the MOST accurate but this is the knowledge of a 6th grader (i tried)


Plants get their food from photosynthesising, they get their energy ffrom the sun and the chlorophyll is what capturers the suns energy. And once the suns energy has been caught then the electrons move around almost like they are excited to get the energy from the sun (the way some people get excited after consuming sugar a.k.a getting hyper) And the electrons are "jumping" in the thylakoid membrane. now there is enough energy to drive to the 2nd phase.

ADP becomes ATP that is when it is gaining more phosphate. Then the NADP gets more hydrogen to be able to store the energy now it has the hydrogen so it becomes.....NADPH. That is also kind of phase 3 the Calvin Cycle where G3P goes on to make glucose.


An animal gets energy from consuming the plants or other animals and sometimes even eating their own kind. Animals like deer, rabbits, moneys, pandas they all eat plants and or fruits. Because they get their energy from the plants and as said before that the plants get it from the sun. So basically all kinds of animals depend on the plants but some ocean creature dont really depend on plants but in some ways they do. Because not only for food, but for oxygen.


As you may have noticed i kinda know more about plants but soon i will be learning about animals since we are still learning about eukaryotic organisnisms.


Hope this helps. And have a great day! :)

3 0
3 years ago
Most of the cells of the human body contain two sets of 23
Minchanka [31]

Answer:

e-one set came from each parent

Explanation:

4 0
3 years ago
Read 2 more answers
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