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Juliette [100K]
2 years ago
10

Explain how the stages of technological design are similar to the process of scientific investigation. Use specific stages from

each process to support your answer.
Biology
3 answers:
Amanda [17]2 years ago
7 0
<span>they both have a question, make a hypothesis, test the hypothesis, and both collect and analyze data and come to a conclusion </span>
trapecia [35]2 years ago
6 0

The scientists come to know more about the natural world via investigation. This incorporates researching associated information, identifying an issue, analyzing the outcomes, designing and conducting an investigation, assessing the conclusion, and interacting the findings.  

The engineers follow the same steps at the time of developing solutions or new products via technological design. The four phases of technological design comprise determining a need, implementing and designing a solution, and assessing the solution.  


Guest1 year ago
0 0

Scientists learn more about the natural world through investigation. This involves identifying a problem, researching related information, designing and conducting an investigation, analyzing the results, evaluating the conclusion, and communicating the findings. Engineers follow similar steps when creating new products or solutions through technological design. The four stages of technological design include identifying a need, designing and implementing a solution, and evaluating the solution.

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Once DNA was shown to be the primary genetic material of life, a race among scientists took place to work out its structure. Whi
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Answer:

The discovery of deoxyribonucleic acid (DNA) forever changed the understanding of genetics, the study of how physical and physiological inheritance is passed down from generation to generation.

The DNA molecule was first identified in the second half of the 19th century. A century later, in the middle of the 20th century, the golden age of discoveries in genetics began, when the structure and functioning of the genetic code was defined.

Today, scientists are focused on researching how to edit DNA to correct mistakes and cure diseases of genetic origin.

DNA was first isolated in 1869 by the Swiss biologist Johan Friedrich Miescher. While studying the chemical composition of white blood cells, he observed that within the cells there was an isolated substance rich in phosphates, without sulfur and resistant to proteases, something that did not correspond to the typical structure of lipids or proteins.

Miescher baptized that new molecule as nuclein, since it was found in the nucleus of all the cells studied.

Between 1885 and 1901, the chemical composition of DNA began to be defined. In 1889 Richard Altmann, a German pathologist who had been a disciple of Miescher, redefined this substance with the term "nucleic acid".

For his part, the German doctor Albert Kossel discovered the existence of carbohydrates and some compounds or nitrogenous bases which he called "adenine", "guanine", "cytosine" and "thymine" within the DNA molecule. This discovery earned him the Nobel Prize for Medicine in 1910. The 20th century began with great advances in DNA research. During the 1920s, Russian-American biochemist Phoebus Levene determined the existence of RNA, another nucleic acid necessary for the transmission of genetic information.

Levene also detected the presence of phosphate group and a type of sugar called ribose, two essential components in the formation of DNA. Later, the biochemist discovered that the phosphate group, sugar, and nitrogenous bases bound together to form nucleotides.

Once the shape and composition of DNA has been discovered, the latest studies focus on how it works: seeing what chemical reactions take place inside the cell in order to try to reproduce them in the laboratory.

Explanation:

In this way, genetic editing techniques aim to modify the genetic code of some cells whose DNA is incorrect or damaged, which can cause disorders and diseases.

8 0
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For the vast majority of time during elongation in translation, what will you find at the p site of the ribosome?
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The first polypeptide
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antonio is considering that since the spiders came first, it cannot have 'derived traits' from anything. spiders themselves are the ancestralspecies of the insects

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Directions: This group of questions consists of five lettered headings followed by a list of phrases or sentences. For each phra
rewona [7]

Answer:

C. CALVIN CYCLE(LIGHT INDEPENDENT REACTIONS OF PHOTOSYNTHESIS.

Explanation:

Photosynthesis is the process whereby green plants manufacture their food (organic matters in form of glucose) from carbon IV oxide and water molecules in the presence of sunlight.

The glucose formed undergoes two purposes; provision of energy and in the fixing of carbon.

This process involved two steps : The light dependent process and the light independent (Calvin cycle).

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ATP and NADPH are formed, water molecules are also formed.

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So the Calvin cycle light independent reaction is involved in the fixing of carbon molecules into organic molecules in the absence of sunlight and the ATP and NADPH formed from the light dependent process of photosynthesis.

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<span>The answer to the question that is being presented above would be K-selected. Sperm whales, which have adapted to live in equilibrium at carrying capacity for a long time, are referred to as the K-selected kind of species.</span>
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