Which of the following is considered an intensive property?

Questions 44

ATI TEAS 7

ATI TEAS 7 Test Bank

Science TEAS Practice Test Questions

Question 1 of 5

Which of the following is considered an intensive property?

Correct Answer: D

Rationale: Density is an intensive property because it does not depend on the amount of matter present. Intensive properties are independent of the quantity of the substance and remain constant regardless of the size or amount of the sample being measured. Mass, weight, and volume are extensive properties that depend on the amount of substance present. Mass and weight change with the amount of matter, while volume changes as the quantity of the substance changes. Therefore, they are not considered intensive properties.

Question 2 of 5

In order to be included in the formation of a scientific conclusion, evidence must be:

Correct Answer: B

Rationale: For scientific evidence to be included in the formation of a scientific conclusion, it must be reproducible. Reproducibility is a fundamental aspect of the scientific method, ensuring that the same experiment will yield the same results if repeated. This allows other researchers to verify the findings and conclusions drawn from the evidence, enhancing the reliability and validity of the scientific process. While quantitative data can be important in supporting evidence, it is not a strict requirement for evidence to be included in scientific conclusions. The term 'obvious' is subjective and does not necessarily guarantee the reliability or reproducibility of the evidence, making it an unreliable criterion for scientific conclusions. Therefore, choice B, reproducible, is the correct answer as it aligns with the fundamental principles of the scientific method, emphasizing the importance of replicating results for establishing reliable conclusions.

Question 3 of 5

Which of the following nucleobases does not exist in RNA?

Correct Answer: B

Rationale: In RNA, the nucleobase Thymine does not exist. The correct answer is B. Thymine is a nucleobase found in DNA, not RNA. RNA contains Uracil instead of Thymine. This is essential in RNA transcription and translation processes. Cytosine and Guanine are nucleobases present in both DNA and RNA. Cytosine pairs with Guanine through hydrogen bonding in both DNA and RNA. Guanine is another nucleobase found in both DNA and RNA molecules. Educationally, understanding the differences between DNA and RNA nucleobases is crucial in molecular biology and genetics. This knowledge is fundamental in comprehending processes like gene expression, protein synthesis, and genetic mutations. It also highlights the significance of specific nucleobases in different types of nucleic acids.

Question 4 of 5

Which of the following statements is FALSE regarding the use of qualitative and quantitative data in scientific research?

Correct Answer: B

Rationale: The correct answer is B because quantitative data is not inherently more accurate than qualitative data. Both types of data have their strengths and limitations, and the choice of data type depends on the research question and methodology. Quantitative data is collected through numerical measurements and involves statistical analysis. On the other hand, qualitative data focuses on perspectives, behaviors, and meanings and is typically gathered through observation and interviews. While quantitative data provides numerical precision, qualitative data offers in-depth insights into behaviors and perspectives that cannot be quantified, making them equally valuable in scientific research.

Question 5 of 5

What type of bond connects sugar and phosphate in DNA?

Correct Answer: C

Rationale: The correct answer is Covalent (C). In DNA, a covalent bond connects sugar and phosphate molecules. This bond involves the sharing of electron pairs between the atoms, providing stability to the DNA structure. Hydrogen bonds are important in DNA structure but are not the primary bond connecting sugar and phosphate. Ionic bonds involve the transfer of electrons, and 'overt' is not a term related to the bond connecting sugar and phosphate in DNA.

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