4,870 research outputs found
International Student Self-Selection into the Introductory Speech Course: Spring 1995- Spring 1997
Assessing the international student diversity in different instructors\u27 speech classes is. important in understanding student perceptions of instructors, and in correcting misperceptions. One·way ANOV A revealed that while time of day was not a significant factor in choosing Speech sections, the instructor was a significant factor. Before the Conference, we will complete a round of surveys that attempts to get detailed impressions of different instructors. Those results will also be included in the paper
A Music Concert with Kimberly Wright and Mark H. Lawrence: A Guest Artist Performance
This is the program for the guest artist performance of Kimberly Wright, on the horn, and Mark H. Lawrence, on the trombone. The guest artists were accompanied by Dr. Russell Hodges on piano. The concert was held on April 8, 1994, in the Recital Hall of the Mabee Fine Arts Center
Comparison of Aircraft Icing Growth Assessment Software
A research project is underway to produce computer software that can accurately predict ice growth under any meteorological conditions for any aircraft surface. An extensive comparison of the results in a quantifiable manner against the database of ice shapes that have been generated in the NASA Glenn Icing Research Tunnel (IRT) has been performed, including additional data taken to extend the database in the Super-cooled Large Drop (SLD) regime. The project shows the differences in ice shape between LEWICE 3.2.2, GlennICE, and experimental data. The project addresses the validation of the software against a recent set of ice-shape data in the SLD regime. This validation effort mirrors a similar effort undertaken for previous validations of LEWICE. Those reports quantified the ice accretion prediction capabilities of the LEWICE software. Several ice geometry features were proposed for comparing ice shapes in a quantitative manner. The resulting analysis showed that LEWICE compared well to the available experimental data
Comparison of LEWICE and GlennICE in the SLD Regime
A research project is underway at the NASA Glenn Research Center (GRC) to produce computer software that can accurately predict ice growth under any meteorological conditions for any aircraft surface. This report will present results from two different computer programs. The first program, LEWICE version 3.2.2, has been reported on previously. The second program is GlennICE version 0.1. An extensive comparison of the results in a quantifiable manner against the database of ice shapes that have been generated in the GRC Icing Research Tunnel (IRT) has also been performed, including additional data taken to extend the database in the Super-cooled Large Drop (SLD) regime. This paper will show the differences in ice shape between LEWICE 3.2.2, GlennICE, and experimental data. This report will also provide a description of both programs. Comparisons are then made to recent additions to the SLD database and selected previous cases. Quantitative comparisons are shown for horn height, horn angle, icing limit, area, and leading edge thickness. The results show that the predicted results for both programs are within the accuracy limits of the experimental data for the majority of cases
Discovery of a Classic FR-II Broad Absorption Line Quasar from the FIRST Survey
We have discovered a remarkable quasar, FIRST J101614.3+520916, whose optical
spectrum shows unambiguous broad absorption features while its double-lobed
radio morphology and luminosity clearly indicate a classic Fanaroff-Riley Type
II radio source. Its radio luminosity places it at the extreme of the recently
established class of radio-loud broad absorption line quasars (Becker et al.
1997, 2000; Brotherton et al. 1998). Because of its hybrid nature, we speculate
that FIRST J101614.3+520916 is a typical FR-II quasar which has been
rejuvenated as a broad absorption line (BAL) quasar with a Compact Steep
Spectrum core. The direction of the jet axis of FIRST J101614.3+520916 can be
estimated from its radio structure and optical brightness, indicating that we
are viewing the system at a viewing angle of > 40 degrees. The position angles
of the radio jet and optical polarization are not well-aligned, differing by 20
to 30 degrees. When combined with the evidence presented by Becker et al.
(2000) for a sample of 29 BAL quasars showing that at least some BAL quasars
are viewed along the jet axis, the implication is that no preferred viewing
orientation is necessary to observe BAL systems in a quasar's spectrum. This,
and the probable young nature of compact steep spectrum sources, leads
naturally to the alternate hypothesis that BALs are an early stage in the lives
of quasars.Comment: 14 pages, 6 postscript figures; accepted for publication in the
Astrophysical Journa
Radio and Millimeter Monitoring of Sgr A*: Spectrum, Variability, and Constraints on the G2 Encounter
We report new observations with the Very Large Array, Atacama Large
Millimeter Array, and Submillimeter Array at frequencies from 1.0 to 355 GHz of
the Galactic Center black hole, Sagittarius A*. These observations were
conducted between October 2012 and November 2014. While we see variability over
the whole spectrum with an amplitude as large as a factor of 2 at millimeter
wavelengths, we find no evidence for a change in the mean flux density or
spectrum of Sgr A* that can be attributed to interaction with the G2 source.
The absence of a bow shock at low frequencies is consistent with a
cross-sectional area for G2 that is less than cm. This
result fits with several model predictions including a magnetically arrested
cloud, a pressure-confined stellar wind, and a stellar photosphere of a binary
merger. There is no evidence for enhanced accretion onto the black hole driving
greater jet and/or accretion flow emission. Finally, we measure the millimeter
wavelength spectral index of Sgr A* to be flat; combined with previous
measurements, this suggests that there is no spectral break between 230 and 690
GHz. The emission region is thus likely in a transition between optically thick
and thin at these frequencies and requires a mix of lepton distributions with
varying temperatures consistent with stratification.Comment: Accepted for publication in Ap
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