MediaWiki API result

This is the HTML representation of the JSON format. HTML is good for debugging, but is unsuitable for application use.

Specify the format parameter to change the output format. To see the non-HTML representation of the JSON format, set format=json.

See the complete documentation, or the API help for more information.

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                "user": "Hasan Ghotme",
                "timestamp": "2026-02-11T08:10:55Z",
                "comment": "Created page with \"This category contains pages related to neutronics, neutron transport, and computational neutron analysis in fusion research.\""
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                "title": "GENE",
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                "user": "Hasan Ghotme",
                "timestamp": "2026-02-09T21:46:06Z",
                "comment": "Created page with \"'''GENE''' ('''Gyrokinetic Electromagnetic Numerical Experiment''') is an open-source computer simulation code used to study plasma turbulence in magnetic confinement fusion devices. GENE solves the gyrokinetic equations to simulate electromagnetic turbulence in plasmas, which is critical for understanding energy confinement in fusion reactors like tokamaks and stellarators.  ==Overview==  GENE is a gyrokinetic turbulence code that simulates plasma behavior at very small...\""
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            {
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                "title": "Piecewise Omnigeneity",
                "pageid": 835,
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                "user": "Jlvelasco",
                "timestamp": "2026-02-09T10:53:42Z",
                "comment": "Created page with \"Piecewise omnigenity is a property of the magnetic field such that the mean radial collisionless guiding center magnetic drift is zero. It consists on the property of omnigenity being fulfilled piecewisely on the flux surface of the stellarator.\""
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                "title": "File:Nuclear fusion.jpg",
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                "title": "Neutronics in Fusion",
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                "params": {},
                "type": "create",
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                "user": "Hasan Ghotme",
                "timestamp": "2026-01-27T21:31:56Z",
                "comment": "Created page with \"= Nuclear Fusion Reactions =  == Deuterium\u2013Tritium (D\u2013T) == <math>^2\\mathrm{H} + ^3\\mathrm{H} \\longrightarrow ^4\\mathrm{He} + n</math>   Q = 17.6 MeV   * Alpha particle: 3.5 MeV   * Neutron: 14.1 MeV  == Deuterium\u2013Deuterium (D\u2013D) == <math>^2\\mathrm{H} + ^2\\mathrm{H} \\longrightarrow ^3\\mathrm{He} + n</math>   Q = 3.27 MeV  <math>^2\\mathrm{H} + ^2\\mathrm{H} \\longrightarrow ^3\\mathrm{H} + p</math>   Q = 4.03 MeV  == Deuterium\u2013Helium\u20113 (D\u2013\u00b3He) == <math>^2\\math...\""
            },
            {
                "logid": 5149,
                "ns": 6,
                "title": "File:Tokamak vs Stellarator Geometry.jpg",
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                "user": "Hasan Ghotme",
                "timestamp": "2026-01-17T09:29:50Z",
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                "title": "File:Tokamak vs Stellarator Geometry.jpg",
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