{"@context":{"@vocab":"https://cir.nii.ac.jp/schema/1.0/","rdfs":"http://www.w3.org/2000/01/rdf-schema#","dc":"http://purl.org/dc/elements/1.1/","dcterms":"http://purl.org/dc/terms/","foaf":"http://xmlns.com/foaf/0.1/","prism":"http://prismstandard.org/namespaces/basic/2.0/","cinii":"http://ci.nii.ac.jp/ns/1.0/","datacite":"https://schema.datacite.org/meta/kernel-4/","ndl":"http://ndl.go.jp/dcndl/terms/","jpcoar":"https://github.com/JPCOAR/schema/blob/master/2.0/"},"@id":"https://cir.nii.ac.jp/crid/1360574096089544448.json","@type":"Article","productIdentifier":[{"identifier":{"@type":"DOI","@value":"10.12942/lrr-2014-4"}},{"identifier":{"@type":"URI","@value":"https://link.springer.com/content/pdf/10.12942/lrr-2014-4.pdf"}},{"identifier":{"@type":"URI","@value":"https://link.springer.com/article/10.12942/lrr-2014-4/fulltext.html"}},{"identifier":{"@type":"URI","@value":"http://link.springer.com/content/pdf/10.12942/lrr-2014-4"}}],"dc:title":[{"@value":"The Confrontation between General Relativity and Experiment"}],"description":[{"type":"abstract","notation":[{"@value":"<jats:title>Abstract</jats:title><jats:p>The status of experimental tests of general relativity and of theoretical frameworks for analyzing them is reviewed and updated. Einstein’s equivalence principle (EEP) is well supported by experiments such as the Eötvös experiment, tests of local Lorentz invariance and clock experiments. Ongoing tests of EEP and of the inverse square law are searching for new interactions arising from unification or quantum gravity. Tests of general relativity at the post-Newtonian level have reached high precision, including the light deflection, the Shapiro time delay, the perihelion advance of Mercury, the Nordtvedt effect in lunar motion, and frame-dragging. Gravitational wave damping has been detected in an amount that agrees with general relativity to better than half a percent using the Hulse-Taylor binary pulsar, and a growing family of other binary pulsar systems is yielding new tests, especially of strong-field effects. Current and future tests of relativity will center on strong gravity and gravitational waves.</jats:p>"}]}],"creator":[{"@id":"https://cir.nii.ac.jp/crid/1380574096089544448","@type":"Researcher","foaf:name":[{"@value":"Clifford M. Will"}]}],"publication":{"publicationIdentifier":[{"@type":"PISSN","@value":"23673613"},{"@type":"EISSN","@value":"14338351"}],"prism:publicationName":[{"@value":"Living Reviews in Relativity"}],"dc:publisher":[{"@value":"Springer Science and Business Media LLC"}],"prism:publicationDate":"2014-06-11","prism:volume":"17","prism:number":"1","prism:startingPage":"4"},"reviewed":"false","dc:rights":["https://creativecommons.org/licenses/by/4.0","https://creativecommons.org/licenses/by/4.0"],"url":[{"@id":"https://link.springer.com/content/pdf/10.12942/lrr-2014-4.pdf"},{"@id":"https://link.springer.com/article/10.12942/lrr-2014-4/fulltext.html"},{"@id":"http://link.springer.com/content/pdf/10.12942/lrr-2014-4"}],"createdAt":"2014-06-11","modifiedAt":"2024-07-31","relatedProduct":[{"@id":"https://cir.nii.ac.jp/crid/1050010920565125632","@type":"Article","resourceType":"学術雑誌論文(journal article)","relationType":["isReferencedBy"],"jpcoar:relatedTitle":[{"@language":"en","@value":"From nonextensive statistics and black hole entropy to the holographic dark universe"}]},{"@id":"https://cir.nii.ac.jp/crid/1050282810831615360","@type":"Article","resourceType":"学術雑誌論文(journal article)","relationType":["isReferencedBy"],"jpcoar:relatedTitle":[{"@language":"en","@value":"Massive graviton geons"}]},{"@id":"https://cir.nii.ac.jp/crid/1050282813790429056","@type":"Article","resourceType":"学術雑誌論文(journal article)","relationType":["isReferencedBy"],"jpcoar:relatedTitle":[{"@language":"en","@value":"Generalized framework for testing gravity with gravitational-wave propagation. 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