Linked from
The 117 pages that link to Scientific method, each with the reason it gives.
Galileo GalileiRelated: His work joined mathematical reasoning with systematic observation and experiment.
Scientific RevolutionRelated: New standards for inquiry helped distinguish testable explanations from inherited authority.
Confirmation biasNarrower topic: Replication and explicit testing can expose conclusions shaped by confirmation bias.
PositivismRelated: Positivists treat systematic inquiry as a model for dependable knowledge.
Forensic scienceNarrower topic: Forensic conclusions depend on testable methods rather than authority or intuition.
EmpiricismRelated: Its experimental practices institutionalize empiricist demands for publicly checkable evidence.
Burden of proofRelated: Scientific claims require support, while critics often challenge who must supply it.
PseudoscienceCompared with: Its practices of testing and correction expose weaknesses pseudoscientific systems often avoid.
PragmatismRelated: Pragmatists often present scientific inquiry as a model of fallible, consequence-sensitive reasoning.
Scientific skepticismNarrower topic: It supplies the broad investigative framework that skeptical claim-checking draws on.
InferenceRelated: Scientists infer whether evidence supports hypotheses and revise explanations accordingly.
Auguste ComteRelated: Comte extended scientific reasoning from nature to the study of society.
Inductive reasoningNarrower topic: Scientific inquiry uses repeated observations to build and revise general claims.
Aristotelian logicRelated: Aristotle connected syllogistic demonstration with the organization of scientific knowledge.
PremiseRelated: Scientific explanations rely on premises drawn from observations, measurements, and background theory.
CounterexampleNarrower topic: Attempts to find counterexamples help test the scope of scientific laws and models.
MeasurementRelated: Quantitative measurements provide evidence for evaluating scientific explanations.
ObservationNarrower topic: Observation supplies empirical input to scientific inquiry and theory testing.
Critical thinkingRelated: It institutionalizes scrutiny of hypotheses, evidence, and alternative explanations.
DialecticCompared with: Scientific inquiry tests explanations against evidence; dialectic focuses on relations among claims and contradictions.
Philosophy of scienceRelated: Its procedures raise questions about whether science has one method or several.
TruthRelated: Scientific claims aim at truth through repeatable testing and correction.
InductionRelated: Scientific theories generalize from experiments and observations, while remaining open to revision.
Occam's razorNarrower topic: Parsimony helps choose hypotheses, while testing determines whether they withstand evidence.
Charles Sanders PeirceNarrower topic: Peirce understood disciplined scientific inquiry as the model for correcting belief.
Computer simulationRelated: Simulation supports experiments on models, but its findings still depend on empirical checks.
Natural philosophyRelated: Modern sciences formalized practices that had gradually changed within natural philosophy.
PsychologyNarrower topic: Psychology uses empirical methods to test explanations rather than relying on intuition alone.
Scientific consensusNarrower topic: Consensus is one outcome of the broader process of testing explanations.
Abductive reasoningNarrower topic: Abductive hypothesis formation is one stage in this broader cycle of inquiry.
ArgumentRelated: Scientific conclusions depend on arguments linking evidence to hypotheses.
AbductionNarrower topic: Abduction supplies candidate explanations that scientific inquiry can test.
Companion plantingRelated: Controlled tests can distinguish genuine companion effects from tradition or coincidence.
ExperimentNarrower topic: Experiments are one way this wider approach tests explanations.
HypothesisNarrower topic: Hypotheses are one stage in this broader cycle of inquiry.
Scientific communicationNarrower topic: Communication makes methods and results available for scrutiny and further testing.
Design thinkingCompared with: Design thinking tests possible solutions, whereas the scientific method primarily tests claims about how the world works.
Empirical evidenceNarrower topic: Empirical evidence is central to this broader approach to inquiry.
Problem of inductionNarrower topic: Science relies on extending evidence beyond the cases already observed.
Bayesian epistemologyRelated: Bayesian accounts model how scientific evidence should alter confidence in theories.
Modus tollensRelated: Tests of predictions often follow the conditional pattern underlying this inference.
Experimental physicsNarrower topic: Experimental physics applies this broader cycle to test claims about nature.
Ibn al-HaythamNarrower topic: His work is often discussed within the longer history of empirical science.
PhysicsNarrower topic: Physics is one science that applies these practices to quantitative models of nature.
Basic researchRelated: It supplies common methods for testing claims in basic research.
Scientific naturalismNarrower topic: Scientific naturalism relies on these practices to investigate the natural world.
SupernaturalCompared with: It tests claims through publicly examinable natural evidence rather than supernatural authority.
DataRelated: Recorded observations provide evidence for scientific hypotheses and tests.
Experimental methodNarrower topic: Experimental work is one way scientific inquiry tests explanations.
FallibilismNarrower topic: Its revisable claims embody the idea that accepted knowledge can be corrected.