An integrated explanation of numerous hypotheses is known as a theory. A theory synthesizes various observations and experimental results to provide a comprehensive understanding of a particular phenomenon. It helps to unify different hypotheses under a cohesive framework, allowing for predictions and further exploration within a scientific context.
A tentative explanation in research is called a hypothesis. The hypothesis is based on observation. The general explanation of the observation is called a theory. In other words, a theory is the result of testing a hypothesis.
A testable explanation for a question that is based upon previous knowledge is known as a scientific hypothesis. This explanation can then be tested using the scientific method.
A scientific theory summarizes a hypothesis or group of hypotheses that have been supported with repeated testing. If enough evidence accumulates to support a hypothesis, it moves to the next step; known as a theory; in the scientific method and becomes accepted as a valid explanation of a phenomenon.
A well-tested explanation that unifies a broad range of observations and hypotheses is known as a scientific theory. For example, the theory of evolution by natural selection explains the diversity of life on Earth by integrating evidence from genetics, fossil records, and comparative anatomy. It not only accounts for a wide variety of biological phenomena but also generates testable predictions, making it a foundational concept in biology.
Scientists find answers to questions through a systematic process known as the scientific method. This involves making observations, forming hypotheses, conducting experiments to test those hypotheses, and analyzing the results. Data collected from experiments help scientists draw conclusions and revise their hypotheses if necessary. Peer review and replication of results by other scientists further validate the findings.
A tentative explanation in research is called a hypothesis. The hypothesis is based on observation. The general explanation of the observation is called a theory. In other words, a theory is the result of testing a hypothesis.
A testable explanation for a question that is based upon previous knowledge is known as a scientific hypothesis. This explanation can then be tested using the scientific method.
A preliminary untested explanation for a physical process is known as a hypothesis. It is a proposed explanation based on limited evidence and serves as a starting point for further investigation and experimentation. Hypotheses are essential in the scientific method, guiding researchers in designing experiments to test their validity and refine their understanding of the phenomenon in question.
A scientific theory summarizes a hypothesis or group of hypotheses that have been supported with repeated testing. If enough evidence accumulates to support a hypothesis, it moves to the next step; known as a theory; in the scientific method and becomes accepted as a valid explanation of a phenomenon.
References to what is now known as Olbers' Paradox date back to the 1500s. This paradox has come up periodically in history. In 1929, Edwin Hubble discovered that the universe is expanding, which offers an explanation to the paradox. Prior to this, any hypotheses were quickly dismissed.
A set of controlled observations that test a proposed explanation are known as an experiment. The proposed explanation is known as the hypothesis of the experiment.
A well-tested explanation that unifies a broad range of observations and hypotheses is known as a scientific theory. For example, the theory of evolution by natural selection explains the diversity of life on Earth by integrating evidence from genetics, fossil records, and comparative anatomy. It not only accounts for a wide variety of biological phenomena but also generates testable predictions, making it a foundational concept in biology.
The integrated circuit which is the foundation of modern society because it computes to all of the modern technelogy.
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