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Categorize each term as something that is typical of a scientific theory, a scientific hypothesis, or both

makes predictions
about future
events

based on
observations of
natural phenomena

a tentative
statement used to
guide scientific
investigations

a well-established,
highly reliable
explanation

can be tested by
many independent
researchers

Answers

Answer 1

To categorize each term, we can determine if it is typical of a scientific theory, a scientific hypothesis, or both

Makes predictions about future events: Scientific Hypothesis. Based on observations of natural phenomena: Both Scientific Theory and Scientific Hypothesis. A tentative statement used to guide scientific investigations: Scientific Hypothesis. A well-established, highly reliable explanation: Scientific Theory

A scientific hypothesis is a tentative statement or prediction that can be tested through scientific investigation. It is based on observations of natural phenomena and can make predictions about future events.

A scientific theory, on the other hand, is a well-established and highly reliable explanation supported by a substantial body of evidence. It goes beyond individual observations and hypotheses, providing a comprehensive understanding of a particular phenomenon or set of phenomena.

Both scientific theories and hypotheses can be tested by many independent researchers to ensure the validity and reliability of the findings. Therefore, the term "Can be tested by many independent researchers" applies to both scientific theories and scientific hypotheses.

By categorizing the given terms, we can see that "Makes predictions about future events" corresponds to a scientific hypothesis, "Based on observations of natural phenomena" applies to both scientific theories and scientific hypotheses, "A tentative statement used to guide scientific investigations" refers to a scientific hypothesis, "A well-established, highly reliable explanation" represents a scientific theory, and "Can be tested by many independent researchers" applies to both scientific theories and scientific hypotheses.

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Related Questions

which statement best explains the decrease in energy avaliability in a food chain

Answers

The statement that best explains the decrease in energy availability in a food chain is D. Some energy in each trophic level is used for life processes.

What is food chain?

A food chain is a network of links in a food web that runs in a straight line from producer organisms to an apex predator, detritivor, or decomposer species. A food chain also demonstrates how organisms are connected to one another by the foods they consume.

A food chain's levels correspond to several trophic levels. The flow of nutrients and energy through an ecosystem is described by a food chain. Energy is first produced by plants at the most fundamental level, and then it is used by higher-level species like herbivores.

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missing part;

Which statement best explains the decrease in energy availability in a food chain?

A. Organisms use almost all the energy they receive.

B. There are fewer organisms at higher trophic levels.

C. There is less biomass at higher trophic levels.

D. Some energy in each trophic level is used for life processes.


The table shows the results of a research study. During the study, the plants were kept in greenhouses where light exposure was
strictly regulated. Each group contained 50 plants of one species and maturity. Based on the table, what was the most likely source of
error?

Answers

The most likely source of error in the research study is sampling error. Sampling error occurs when the sample chosen to represent a population is not truly representative of the population.

How to explain the information

In this case, the sample size of 50 plants in each group is relatively small, and it is possible that the plants in the sample were not representative of the entire population of plants. This could lead to the results of the study being biased.

There are a few things that could have caused the sample to be biased. For example, the plants in the sample may have been selected from a particular location, which may have had different environmental conditions than the rest of the population. Additionally, the plants in the sample may have been planted at different times, which could have led to differences in their growth rates.

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How do conditions in the United States change when the jet stream moves north?

Answers

Answer:Air north of a jet stream is typically colder, while air to the south is usually warmer. As jet streams dip or break off, they move air masses around, creating shifts in global weather patterns. A large buckle in the jet stream,

Explanation:

for example, is what pulled Hurricane Sandy ashore in New Jersey in 2012

8
Select the correct answer.
Which statement best explains acceleration?
A.
B.
C.
D.
It is the total distance covered over a period of time.
It is a change in velocity over a period of time.
It is a change in displacement over a period of time.
It is a change in direction over a period of time.
Reset
Next

Answers

Answer:Acceleration is indeed a change in velocity over a period of time.

Explanation:

what usually accompanies a cold spell in minnesota?

Answers

Polar jet steams moving south!!!!

A biology student runs a lab experiment with mice to measure their rates of cellular respiration of different age. The results experiment show that young mice that are still growing have higher metabolic rates. Which properties of life apply directly to these observations? 1.homeostasis 2.growth,development, and reproduction 3.organizations 4.heredity 5.energy utilization

Answers

The properties of life that apply directly to the observation of higher metabolic rates in young mice are growth, development, and reproduction, as well as energy utilization.

1. Growth, Development, and Reproduction: The observation that young mice, which are still growing, have higher metabolic rates directly relates to the property of growth, development, and reproduction. This property encompasses the ability of organisms to increase in size, mature, and reproduce offspring. In this case, the higher metabolic rates in young mice indicate their active growth and development stages.

2. Energy Utilization: The observation also directly relates to the property of energy utilization. Metabolic rates reflect the rate at which organisms utilize energy, and the higher metabolic rates in young mice suggest that they are utilizing energy at a faster pace. This is likely due to the high energy demands associated with growth and development processes.

Other properties of life:

3. Homeostasis: Although not directly related to the observation, homeostasis is a fundamental property of life that refers to the ability of organisms to maintain a stable internal environment despite external fluctuations. While the experiment focused on metabolic rates and age-related differences, homeostasis ensures that the mice maintain a stable internal environment necessary for their survival.

4. Organization: Organization is another property of life that refers to the hierarchical arrangement of structures and processes within an organism. While the observation of higher metabolic rates in young mice does not directly relate to organization, it is a fundamental characteristic that underlies the functioning of living systems.

5. Heredity: Heredity, the passing of traits from parents to offspring, is not directly applicable to the observation of higher metabolic rates in young mice. However, it plays a role in determining the genetic factors that influence growth, development, and metabolic processes in mice.

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What corrective options are available to the surgical team members when a breach in sterile technique

Answers

When a breach in sterile technique is noticed, the surgical team members have several corrective options that they can consider to minimize any negative consequences. These corrective options include:

Disclosing the breach: If the breach is minor, it is important that the surgical team members disclose the breach to everyone involved in the procedure as soon as possible. This will allow everyone to take appropriate action to prevent any infections from occurring.

Correcting the breach: Once the breach has been disclosed, the surgical team members should work to correct the breach as soon as possible. For example, if a surgical instrument was dropped on the floor, it should be removed from the surgical field and replaced with a sterile instrument to minimize the risk of infection.

Restarting the procedure: In some cases, it may be necessary to restart the entire procedure if the breach is too significant to be corrected. While this may be time-consuming and may delay the procedure, it is important to prioritize the safety of the patient above all else.

Documenting the breach: Finally, the surgical team members should document the breach in detail. This documentation should include the type of breach that occurred, when it occurred, and what corrective actions were taken to address the breach.

This information can be used to help prevent future breaches and to identify areas for improvement in the surgical process.

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Is crick and Watson a type of genetic test

Answers

No, "Crick and Watson" is not a type of genetic test. Crick and Watson refer to James D. Watson and Francis Crick, who were scientists involved in the discovery of the structure of DNA. They proposed the double-helix structure of DNA in 1953, which provided the foundation for understanding genetic information and its role in heredity.

Genetic tests, on the other hand, are laboratory tests that analyze an individual's DNA or genes to provide information about their genetic makeup, potential genetic disorders, or predispositions to certain conditions.

These tests can be used for various purposes, such as diagnosing genetic disorders, predicting the risk of developing certain diseases, determining carrier status for genetic conditions, or providing ancestry and genealogical information.

While Crick and Watson made significant contributions to the field of genetics, they are not directly associated with genetic testing. Genetic tests are based on scientific advancements and technologies developed after their groundbreaking discovery of the DNA structure.

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Every cell in a pig’s body originates from a single fertilized egg cell. As the pig embryo develops, cells change into specialized cell types. These changes are controlled by the cells’ -

Answers

These changes in cell specialization during the development of a pig embryo are controlled by the cells' genetic programming and gene expression. This process is regulated by various molecular mechanisms, including signal transduction pathways, transcription factors, and epigenetic modifications.

These changes in cell specialization during the development of a pig embryo are controlled by the cells' genetic programming and gene expression. Each cell in the pig's body contains the same set of genes within its DNA. However, during development, different genes are activated or deactivated in specific cells, leading to the differentiation and specialization of those cells into specific types.

This process is regulated by various molecular mechanisms, including signal transduction pathways, transcription factors, and epigenetic modifications. Signal molecules and interactions between neighboring cells play a crucial role in guiding the differentiation process. For example, certain signaling molecules can trigger cascades of gene expression that drive cells towards specific developmental pathways.

Additionally, transcription factors are proteins that bind to specific regions of DNA, controlling the expression of genes. They can activate or repress gene transcription, determining the cell's fate and specialization.

Epigenetic modifications, such as DNA methylation and histone modifications, also influence gene expression patterns and can contribute to the establishment of cell identity.

Together, these cellular mechanisms orchestrate the process of cell specialization and ensure the development of the various specialized cell types within a pig's body.

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The atomic number of krypton (Kr) is 36, and it’s mass number is 84. How many neutrons do you have?

Answers

Answer:

48 neutrons

Explanation:

The atomic mass number of Krypton is 83.80 or 84, and the atomic number is 36, so 84 - 36 = 48. There are 48 neutrons inside the nucleus of one atom of Krypton.

how do Euglena reproduce?​

Answers

Euglena reproduce asexually, by longitudinal cell division; they are not know to reproduce sexually. Several species produce resting cysts that can withstand drying. Euglena live in fresh and brackish water habitats rich in organic matter.
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