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  2. DWE's Gallery

    https://people.ast.cam.ac.uk/~dwe/gallery/
    18 May 2018: You paint this onto glass, let it dry for 24 hours and bake it in the oven at 160C.
  3. Introduction to Cosmology Lecture 6 Loveday+ 2012 Reddy & ...

    https://people.ast.cam.ac.uk/~pettini/Intro%20Cosmology/Lecture06_slides.pdf
    23 Oct 2018: SN Cosmology Project. 14. 16. 18. 20. 22. 24. 0.0 0.2 0.4 0.6 0.8 1.01.0.
  4. Gaia DFS PLS prop

    https://people.ast.cam.ac.uk/~gil/Gaia-RAeS-Leslie-Bedford-April2017.pdf
    29 Mar 2018: Slide Number 24. Gaia science: learning how to learn. Slide Number 26.
  5. 30 Jul 2018: F7 V 4.126 2.83 2.4 13.7 137 N/– [22, 24, 28]. ... J., Stapelfeldt,K. R., and Wyatt, M. C., “Target Selection for the LBTI Exozodi Key Science Program,” ApJS 216, 24(Feb.
  6. M. Pettini: Introduction to Cosmology — Lecture 3 RELATIVISTIC ...

    https://people.ast.cam.ac.uk/~pettini/Intro%20Cosmology/Lecture03.pdf
    11 Oct 2018: 2.12), the Friedmann equation (3.21) takes theform:. ȧ20 =8π. 3Ga20ρ0 kc2 = H20a200 kc2 (3.24).
  7. Astronomy and Astrophysics in the Gaia skyProceedings IAU Symposium…

    https://people.ast.cam.ac.uk/~gil/gaia_from_proposal_to_gdr1.pdf
    26 Mar 2018: 24 G. Gilmore. Figure 1. The ROEMER proposal to ESA in 1993.
  8. 31 Jul 2018: radius, and albedo Cont. 3 8.16 9.24 8.67 83 Existence of atmosphere Cont. ... The Messenger 143:16–24. Errmann R, Minardi S, Labadie L, Muthusubramanian B, Dreisow F, NolteS, Pertsch T (2015) Interferometric nulling of four channels with
  9. M. Pettini: Introduction to Cosmology — Lecture 7 THERMAL ...

    https://people.ast.cam.ac.uk/~pettini/Intro%20Cosmology/Lecture07.pdf
    25 Oct 2018: We also saw in Lecture 2 (eq. 2.24) that in the radiation-dominated era thescale factor of the Universe evolves as a(t) = (t/t0). ... 7. 8. g. 2aT 4 for fermions,. (7.24). in equilibrium when kT mc2.
  10. MNRAS 000, 1–11 (2015) Preprint 9 November 2018 Compiled ...

    https://people.ast.cam.ac.uk/~wyatt/khhw18.pdf
    9 Nov 2018: θ λ Depth. 3542116 1268.2 11.0 1.05 0.24 0.23 0.001033542116 991.9 8.3 1.08 0.28 0.25 0.00074. ... For KIC 8027456, assuming M? = 2M, R? = 1.5R?,and θ = 0.24 days yields an upper limit of rt < 1.4au, and acircular period of 1.1 years.
  11. M. Pettini: Introduction to Cosmology — Lecture 2 NEWTONIAN ...

    https://people.ast.cam.ac.uk/~pettini/Intro%20Cosmology/Lecture02.pdf
    10 Oct 2018: ρ 1a4. (2.23). 7. and. a(t) =. (t. t0. )1/2; ρ(t) =. ρ0a4. =ρ0t. 20. t2(2.24). This is the second classic cosmological solution.

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