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167 Baudis L. 2015. Dark matter searches. Ann. Phys. (Berlin). 528 (1–2): 74–83. arXiv:1509.00869 [astro-ph.CO].

168 Goodman M. W., Witten E. 1985. Detectability of certain dark-matter candidates. Phys. Rev. D. 31 (12): 3059–3063.

169 Gelmini G. 1987. Bounds on galactic cold dark matter particle candidates and solar axions from a Ge-spectrometer. In: Hinchliffe I., editor. Proceedings of the theoretical workshop on cosmology and particle physics: July 28 – Aug. 15, 1986, Lawrence Berkeley Laboratory, Berkeley, California. Singapore: World Scientific.

170 Benoit A. et al. 2001. First results of the EDELWEISS WIMP search using a 320 g heat-and-ionization Ge detector. Phys. Lett. B. 513: 15–22. arXiv: astro-ph/0106094.

171 Xenon100 Collaboration. 2013. Limits on spin-dependent WIMP-nucleon cross sections from 225 live days of XENON100 data. Phys. Rev. Lett. 111: 021301. arXiv:1301.6620 [astro-ph.CO].

172 Milgrom M. 1983. A modification of the Newtonian dynamics – implications for galaxies. Astrophys. J. 270: 371.

173 См., например, Moffat J. W., Rahvar S. 2013. The MOG weak field approximation and observational test of galaxy rotation curves. MNRAS. 436: 1439. arXiv:1306.6383 [astroph.GA]. См. также другие статьи этих авторов.

174 Berezhiani L., Khoury J. 2015. Theory of dark matter superfluidity. Phys. Rev. D. 92: 103510. arXiv:1507.01019 [astro-ph.CO]. Схожая идея предлагалась и раньше: Bruneton J.-P. et al. 2009. Reconciling MOND and dark matter? JCAP. 3: 21. arXiv:0811.3143 [astro-ph].

175 Boyle L. A. et al. 2006. Inflationary predictions for scalar and tensor fluctuations reconsidered. Phys. Rev. Lett. 96: 111301. arXiv: astro-ph/0507455.

176 Martin J. et al. 2014. The best inflationary models after Planck. JCAP. 1403: 039. arXiv:1312.3529 [astro-ph.CO].

177 Azhar F., Butterfield J. 2017. Scientific realism and primordial cosmology. In: Saatsi J., editor. The Routledge handbook of scientific realism. New York: Routledge. arXiv:1606.04071 [physics.hist-ph].

178 Silk J. 2007. The dark side of the universe. Astron. Geophys. 48 (2): 2.30–2.38.

179 Ijjas A. et al. 2017. Pop goes the universe. Scientific American, January 2017.

180 Hawking S. W., Ellis G. F. R. 1973. The large scale structure of space-time. Cambridge, UK: Cambridge University Press. (Хокинг С., Эллис Д. Крупномасштабная структура пространства-времени. М.: Мир, 1977. – Прим. перев.)

181 Ellis G. F. R. 1975. Cosmology and verifiability. QJRAS. 16: 245–264.

182 Stepnes S. 2007. Detector challenges at the LHC. Nature. 448: 290–296.

183 Ellis G. F. R, Brundrit G. B. 1979. Life in the infinite universe. QJRAS. 20: 37–41.

184 Hilbert D. 1926. Über das Unendliche. Math. Ann. 95: 161–190.

185 Krauss L. 2012. The consolation of philosophy. Scientific American, April 27, 2012.

186 Weinberg S. 1994. Dreams of a final theory: the scientist’s search for the ultimate laws of nature. New York: Vintage.

187 Hawking S., Mlodinow L. 2010. The grand design. New York: Bantam.

188 Pigliucci M. 2012. Lawrence Krauss: another physicist with an anti-philosophy complex. Rationally Speaking, April 25, 2012. http://rationallyspeaking.blogspot.de/2012/04/lawrence-krauss-another-physicist-with.html

189 Maudlin T. 2015. Why physics needs philosophy. The Nature of Reality (blog), April 23, 2015. PBS. www.pbs.org/wgbh/nova/blogs/physics/2015/04/physics-needs-philosophy/

190 Hooper D. 2008. Nature’s blueprint. New York: Harper Collins, p. 5.

191 Rutjens B. T., Heine S. J. 2016. The immoral landscape? Scientists are associated with violations of morality. PLoS One. 11 (4): e0152798.

192 Watson J. D. 2001. The double helix: a personal account of the discovery of the structure of DNA. New York: Touchstone, p. 210.

193 Fleming P. A., Bateman P. W. 2016. The good, the bad, and the ugly: which Australian terrestrial mammal species attract most research? Mammal. Rev. 46 (4): 241–254.

194 Krugman P. 2009. How did economists get it so wrong? New York Times, September 2, 2009.

195 См., например, Farmer J. D., Geanakoplos J. 2008. The virtues and vices of equilibrium and the future of financial economics. arXiv:0803.2996 [q-fin.GN].

196 Patrignani C. et al. (Particle Data Group). 2016. Review of particle physics. Chin. Phys. C. 40: 100001.

197 Baker M. 2016. 1,500 scientists lift the lid on reproducibility. Nature. 533: 452–454.

198 Maldacena J., Susskind L. 2013. Cool horizons for entangled black holes. Fortschr. Physik. 61 (9): 781–811. arXiv:1306.0533 [hep-th].

199 Для дальнейшего чтения: Banaji M. R., Greenwald A. G. 2013. Blindspot: hidden biases of good people. New York: Delacorte; Kahneman D. 2012. Thinking, fast and slow. New York: Penguin (Канеман Д. Думай медленно… решай быстро. М.: АСТ, 2014. – Прим. перев.).

200 Balcetis E. 2008. Where the motivation resides and self-deception hides: how motivated cognition accomplishes self-deception. Soc. Pers. Psychol. Compass. 2 (1): 361–381.

201 Stanovich K. E., West R. F. 2008. On the relative independence of thinking biases and cognitive ability. J. Pers. Soc. Psychol. 94 (4): 672–695.

202 Cruz M. G. et al. 1997. The impact of group size and proportion of shared information on the exchange and integration of information in groups. Communic. Res. 24 (3): 291–313.

203 Wolchover N. 2016. Supersymmetry bet settled with cognac. Quanta Magazine, August 22, 2016.

204 Eberhart O. et al. 2012. Impact of a Higgs boson at a mass of 126 GeV on the standard model with three and four fermion generations. Phys. Rev. Lett. 109: 241802. arXiv:1209.1101 [hep-ph].

205 Anderson G., Castano D. 1995. Measures of fine tuning. Phys. Lett. B. 347: 300–308. arXiv: hep-ph/9409419.

206 Подробнее см.: Hossenfelder S. 2018. Screams for explanation: finetuning and naturalness in the foundations of physics. arXiv:1801.02176.

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