Linked from
The 87 pages that link to Scientific Revolution, each with the reason it gives.
Printing pressRelated: Printed books and diagrams helped standardize and circulate scientific claims.
RenaissanceRelated: Renaissance textual scholarship and observation formed part of the intellectual background to later scientific change.
Italian RenaissanceRelated: Renaissance observation, mathematics, and classical learning contributed to later changes in natural philosophy.
History of booksRelated: Printed books enabled findings, diagrams, and methods to circulate among scholars.
ModernityRelated: New methods of inquiry weakened inherited accounts of nature and knowledge.
Movable typeRelated: Printed works helped circulate observations, diagrams, and arguments among scholars.
NaturalismRelated: Its mathematical and experimental methods strengthened natural explanations of physical phenomena.
History of mathematicsRelated: Mathematical methods became central to new accounts of motion and nature.
Scientific journalRelated: New methods and communities of inquiry created demand for regular scientific reporting.
Cabinet of curiositiesRelated: New observation and classification reshaped how collectors interpreted natural objects.
Technological changeRelated: New methods of inquiry increasingly connected scientific knowledge with practical invention.
Early modern periodRelated: New methods and accounts of nature altered learned authority during this period.
History of astronomyRelated: Debates over planetary motion helped change standards of evidence and explanations of nature.
Jean-Paul MaratRelated: Marat pursued experiments and published on physical science before the Revolution reshaped his public career.
Science and religionRelated: Its religious and political settings complicate stories of science emerging against faith.
Baroque literatureRelated: New accounts of nature and the cosmos intensified literary questions about knowledge and instability.
Print cultureRelated: Printed books and journals helped circulate observations and arguments across distances.
English RenaissanceRelated: English Renaissance scholarship helped prepare institutions and methods later associated with this transformation.
Industrial societyRelated: New approaches to experiment and mechanical knowledge contributed to technologies later applied in industry.
Natural scienceRelated: New mathematical and experimental approaches helped shape modern natural science.
University of PaduaRelated: Padua’s teaching and scholars contributed to the experimental culture associated with this transformation.
Western philosophyRelated: New sciences transformed philosophical accounts of nature, evidence, and the limits of human knowledge.
Philosophy of natureRelated: Its mathematical and experimental sciences changed what philosophical explanations of nature had to address.
Aristotle's biologyRelated: New anatomy and experimental methods challenged inherited Aristotelian claims about animals.
LapidaryRelated: New methods of observation and experiment challenged inherited claims about stones.
Printing revolutionRelated: Print enabled scholars to compare arguments, diagrams, and observations across distance.
Journal des sçavansRelated: The journal circulated reports and debate during the transformation of knowledge-making in seventeenth-century Europe.
Modern philosophyRelated: Its new image of nature pressured philosophers to rethink knowledge and explanation.
History of glassRelated: Glass lenses and instruments extended observation beyond unaided human senses.
History of timekeeping devicesRelated: Improved instruments supported more precise observation and quantitative study of motion.
ProtoscienceRelated: Rapid shifts can make established disciplines look unsettled, but do not automatically make them protosciences.
Modern era (history)Related: New methods of inquiry altered knowledge, technology, and claims to authority.
Natural science disciplinesRelated: Its changes helped establish modern approaches to studying the natural world.