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Scientific method


 

Scientific methods or processes are considered fundamental to the scientific investigation and acquisition of new knowledge based upon physical evidence by scientific communities. Scientists use observations and reasoning to develop technologies and propose explanations for natural phenomena in the form of hypotheses. Predictions from these hypotheses are tested by experiment and further technologies developed. Any hypothesis which is cogent enough to make predictions can then be tested reproducibly in this way. Once it has been established that a hypothesis is sound (by use of the above methods), it becomes a theory. Sometimes scientific development takes place differently with a theory first being developed gaining support on the basis of its logic and principles. For example the theory of general relativity was invented, gained supporters, and only later confirmed by experiment.

Scope and goals

Scientific method can be applied to anything within the range of our experiences. As long as something has an effect on our lives, we can formulate theories and try to predict what this effect might be. The effect itself is an experiment, testing whether our theory was right.

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People use scientific methods all the time. They have theories about devices and make predictions how those will react to their actions. If a device does not work as expected, the experiment may disprove their theory. If they adjust their theory, they are applying scientific methods; if they nevertheless stick to their theory because of nonscientific reasons, they are not.

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Scientific method does not aim to give an ultimate answer. Its iterative and recursive nature implies that it will never come to an end, so any answer it gives is provisional. Hence it cannot prove or verify anything in a strong sense. However, if a theory passed many experimental tests without being disproved, it is usually considered superior to any theory that has not yet been put to a test.

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