The subatomic particles that govern potential chemical reactions among elements are

Answers

Answer 1
Answer: The subatomic particles that govern potential chemical reaction among elements are electrons. Electron is a particle that contains negative charges. They are considered to be an elementary particle due to their lack of components nor structure. 
Answer 2
Answer:

Answer: The subatomic particles/units that govern potential chemical reactions among elements are (electrons). Answer on Odyssey ware

Explanation:


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Scientists group organisms into kingdoms by looking at specific characteristics. Which is a characteristic of a carrot plant? no cell walls heterotrophic unicellular eukaryotic

Answers

Scientists group organisms into kingdoms by looking at specific characteristics. The characteristic of the carrot plant is eukaryotic. Organisms with eukaryotic cells are whose cells contain a nucleus and other organelles enclosed within membranes.

Explanation:

Eukaryotes are organisms whose cells have a nucleus surrounded by membranes, unlike prokaryotes. Eukaryotic cells are larger than prokaryotic cells and have a “true” nucleus, membrane-bound organelles, and rod-shaped chromosomes. The nucleus houses the cell's DNA and regulates the structure of proteins and ribosomes.

The carrot plant is characterized to be a eukaryotic organism belonging to the Kingdom Plantae.

What are eukaryotic organisms?

Eukaryotic organisms are organisms that have cell nuclei and membrane-bound organelles, which are classified into four different kingdoms (Protista, Animalia, Plantae and Fungi).

  • Eukaryotic organisms are composed of one (unicellular) or more cells (multicellular organisms).

  • Plants are eukaryotic multicellular organisms belonging to the kingdom Plantae.

In conclusion, the carrot plant is characterized to be a eukaryotic organism belonging to the Kingdom Plantae.

Learn more about eukaryotes here:

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Which of the following makes the statement FALSE? In the alternation of generations life cycle, the generations that alternate A. Are haploid and diploid multicellular organisms B. Produce each other C. Directly develop into one another as parts of the same individual D. May be physically attached

Answers

Answer:

The false statement is option C. Directly develop into one another as parts of the same individual.

Explanation:

Alternation of generations is one of the type of the life cycle which is common in land plants and some of the alga species change n between haploid and diploid generation alternatively of an individual. It is presented in the plants only as in animals both haploid and diploid cell present in every generation.

In the alternation of generation, generation does not directly develop into each other as part of the particular individual.

Thus, the correct answer is option C. Directly develop into one another as parts of the same individual.

Which pair of characteristics would you use to place a fish in one of the three fish classes: agnatha, cartilaginous fishes, or bony fishes?

Answers

The pair of characteristics that you would use to place a fish in one of the three fish classes: agnatha, cartilaginous fishes, or bony fishes is by skeleton type and skin covering. The correct answer choice is:


Answer: A) skeleton type and skin covering.


I hope this helps, Regards.

A pH of 2 indicates a(n) _____.

Answers

A pH of 2 indicates a acid.

Answer:

its a strong acid to be exact

Explanation:

Gene expression in prokaryotes is regulated at which stage?

Answers

Gene expression in prokaryotes can be regulated at multiple stages including transcriptional and co-translational. Operons respond routinely to the presence of specific metabolites and change the availability of activators and repressors while speific end products of biosynthetic pathways can regulate the translatability of mRNAs for new proteins.

All organisms begin life as a ____________ cell.

Answers

Answer;

-Single

All organisms begin life as a single cell

Explanation;

-Every living organism begins life as a single cell. Unicellular organisms may stay as one cell but they grow too. Multicellular organisms add more and more cells to form more tissues and organs as they grow. Growth and development of living organisms are not the same things.

-In unicellular organisms such as bacteria, mitosis is a type of asexual reproduction, making identical copies of a single cell. In multicellular organisms, mitosis produces more cells for growth and repair.

The complete statement will be "All organisms begin life as a single cell."

How to complete the blank?

The statement highlights the concept of cellular reproduction and development in living organisms. Every organism, regardless of its complexity or size, originates from a single cell, commonly referred to as a zygote.

Sexual reproduction, which involves the fusion of sperm and egg cells, is one method by which organisms begin life as a single cell. During fertilization, the sperm and egg cells combine their genetic material, resulting in the formation of a zygote. This zygote then undergoes a series of cell divisions through a process called mitosis, giving rise to multiple cells and initiating the development of a new organism.

In the case of asexual reproduction, a single parent organism produces offspring without the involvement of gametes (sperm or egg cells). This can occur through various mechanisms such as binary fission, budding, or fragmentation. Regardless of the method, a single parent cell is responsible for initiating the development of the offspring.

From this single cell, subsequent cell divisions and differentiation processes occur, leading to the formation of various tissues, organs, and ultimately, a fully developed organism. The cells generated during development specialize and take on specific roles, such as forming tissues, muscles, nerves, and organs, enabling the organism to function and grow.

Therefore, regardless of the species or reproductive mode, all organisms initially begin their life cycle as a single cell, from which they undergo complex processes of cellular reproduction, growth, and differentiation to reach their fully developed state.

Then the complete statement is  "All organisms begin life as a single cell."

Learn more about cells at:

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