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galaxies; their interstellar contents including dust, gas, and heavy elements; and their structural and dynamical properties. I conclude by considering some of the most pressing and open questions regarding the physics of high-redshift galaxies, which are to be addressed with future facilities. She concludes by looking at the unanswered mysteries of physics of high-redshift galaxies.
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56:(UCLA) she has taught Nature of the Universe, Black Holes and Cosmic Catastrophes, Cosmology: Our Changing Concepts of the Universe, Galaxies, Scientific Writing, AGNs, Galaxies, *and* Writing, and The Formation and Evolution of Galaxies and the IGM. Shapley has committed herself to over a two decades of research and publication in the interest of physics and astronomy.
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Alice has been listed as a contributing author on 100 publications dating back to 2000. She is listed as the primary author in eight publications, including "The Direct
Detection of Lyman-Continuum Emission from Star-forming Galaxies at z ~ 3”. Shapley can be found to either written or contributed to
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For this publication
Shapley looks at a census of the methods used to find distant galaxies as well as the empirical constraints on their multi-wavelength luminosities and colors. She goes on to discuss what is already known about stellar content and past histories of star formation in high-redshift
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she was a Miller
Postdoctoral Fellow. She has also held the position of Associate Professor in the Department of Physics and Astronomy from 2005 to 2008, as well as Assistant Professor in the Department of Astrophysical Sciences from 2008 to 2013. Alice Shapley went as far as to hold the position of
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were detected, and the ratio of emergent flux density to Lyman continuum region was determined. The collected data for the average emergent flux density ratio contradicted the escape fraction previously implied from past publications. The team was able to confirm estimates of the level of the
175:, but the emergent far-UV spectra could not be confirmed. To help solve this problem, the group suggests taking a sample of LBGs with deep Lyman continuum measurements that is an order of magnitude larger and covers a larger range of
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The star-forming galaxy CASSOWARY 20 was studied in this publication. Temperature and density-sensitive emission lines were used to generate physical properties of the system, as well as a
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of CASSOWARY 20 with a small level of uncertainty. Large-scale outflows of interstellar medium were similar to related data from galaxies with higher rates of star formation.
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of its atmosphere. The galaxy was found to have a surprisingly low carbon-to-oxygen ratio, suggesting it was quickly formed by a
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Since 2013 Alice
Shapley has held the position of department of physics and astronomy professor. From 2003 to 2005 while at the
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Shapley, Alice (2006-11-10). "THE DIRECT DETECTION OF LYMAN CONTINUUM EMISSION FROM STAR-FORMING GALAXIES AT z 3".
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from 2018 to 2022. Shapley has also spent time teaching at
Princeton in the areas of astronomy and physics.
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James, Bethan L.; Pettini, Max; Christensen, Lise; Auger, Matthew W.; Becker, George D.; King, Lindsay J.;
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812:"APS Colloquium - 4/25/2022 - Alice Shapley - The MOSFIRE Deep Evolution Field (MOSDEF) Survey..."
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Member of "Galaxies Across Cosmic Time" Science
Frontier Panel for Astro2010 Decadal Survey
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Testing metallicity indicators at z~1.4 with the gravitationally lensed galaxy CASSOWARY 20
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in 2003. Her PhD was focused around the research of the "Astrophysical
Properties of
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The Direct
Detection of Lyman-Continuum Emission from Star-forming Galaxies at z ~ 3
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Department of
Astronomy and Steward Observatory, University of Arizona
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Distinguished Women
Scholar Series Lecturer, University of Victoria
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162:. Ionizing radiation escaping from individual galaxies at high
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Extensive experience in optical and near-infrared imaging and
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Department of Physics and Astronomy, the University of Toledo
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is a professor at the University of California, Los Angeles (
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UCLA Department of Physics and Astronomy Teacher of the Year
505:"California Institute of Technology Astronomy Department"
470:"California Institute of Technology Astronomy Department"
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Biermann Lecturer, Max Planck Institute for Astrophysics
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UCLA Department of Physics and Astronomy Teaching Award
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Nominated Participant, UCLA Faculty Leadership Academy
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showed uncharacteristically deep penetration into the
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Kavli Lecturer, American Astronomical Society Meeting
108:formation and evolution, the feedback processes in
624:Monthly Notices of the Royal Astronomical Society
618:; Shapley, Alice E.; Steidel, Charles C. (2013).
445:"Hubble spots spiral galaxy that shouldn't exist"
348:(LRIS, MOSFIRE, HIRES, ESI, NIRC, NIRSPEC, LMAP)
833:Traveling Back in Time to the Birth of Galaxies
316:Elected Fellow of the American Physical Society
684:"Physical Properties of Galaxies from z = 2-4"
854:University of California, Los Angeles faculty
129:Vice Chair for Astronomy and Astrophysics at
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203:Physical Properties of Galaxies from z = 2-4
688:Annual Review of Astronomy and Astrophysics
864:California Institute of Technology alumni
766:"17th Marc Aaronson Memorial Lectureship"
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869:Fellows of the American Physical Society
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112:galaxies, stellar populations at high
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322:132nd Faculty Research Lecturer, UCLA
250:, David and Lucile Packard Fellowship
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54:University of California, Los Angeles
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748:"McMaster Cosmology Lecture Series"
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126:University of California at Berkley
283:, Marc Aaronson Memorial Lecture,
238:, NSF Graduate Research Fellowship
231:California Institute of Technology
90:California Institute of Technology
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443:Maugh, Thomas H. (18 July 2012).
154:observations of samples for z~ 3
823:"132nd Faculty Research Lecture"
682:Shapley, Alice E. (2011-09-01).
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817:. JILA Science. April 26, 2022.
545:"Alice E. Shapley Publications"
229:, Virginia Gilloon Fellowship,
379:Kitt Peak National Observatory
262:, McMaster Cosmology Lecture,
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338:Palomar 200-inch telescope (
369:Subaru Observatory (MOIRCS)
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354:(ACS, NICMOS. WFC3, WFPC2)
835:begins at 4:58 in video.)
563:The Astrophysical Journal
179:than what they gathered.
167:ionizing background from
859:Radcliffe College alumni
84:Colleges in 1997, and a
710:2011ARA&A..49..525S
373:Spitzer Space Telescope
142:over 300 publications.
37:) in the Department of
364:Gemini-South Telescope
352:Hubble Space Telescope
220:, Leo Goldberg Prize,
160:Lyman continuum region
52:. Through her time at
829:. UCLA. May 19, 2022.
285:University of Arizona
156:star-forming galaxies
784:"APS Fellow Archive"
655:10.1093/mnras/stu287
358:James Webb Telescope
327:Observing Experience
264:University of Toledo
94:Lyman Break Galaxies
88:in astronomy at the
64:Shapley received an
646:2014MNRAS.440.1794J
585:2006ApJ...651..688S
27:American astronomer
402:has a profile for
449:Los Angeles Times
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405:Alice E. Shapley
212:Awards and honors
193:chemical reaction
189:chemical analysis
76:, and physics at
31:Alice Eve Shapley
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788:www.aps.org
630:(2): 1794.
407:(Q19518126)
197:metallicity
843:Categories
793:2021-10-15
454:15 January
386:References
308:2019-2020,
254:2009–2010,
177:luminosity
120:Employment
831:(Lecture
734:118479254
726:0066-4146
701:1107.5060
637:1311.5092
381:(NEWFIRM)
360:(NIRSpec)
248:2006–2011
242:2006–2008
236:1998-2001
227:1997-1998
164:red shift
110:starburst
82:Radcliffe
70:astronomy
60:Education
43:Astronomy
664:24059879
513:15 March
478:15 March
169:galaxies
114:redshift
827:YouTube
815:YouTube
706:Bibcode
642:Bibcode
601:3191852
581:Bibcode
400:Scholia
366:(GNIRS)
222:Harvard
173:quasars
78:Harvard
39:Physics
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375:(IRAC)
342:, LFC)
340:COSMIC
106:galaxy
730:S2CID
696:arXiv
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632:arXiv
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571:arXiv
548:(PDF)
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320:2022,
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515:2015
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281:2014
260:2010
218:1997
171:and
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80:and
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