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Institution

University of Arkansas

EducationFayetteville, Arkansas, United States
About: University of Arkansas is a education organization based out in Fayetteville, Arkansas, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 17225 authors who have published 33329 publications receiving 941102 citations. The organization is also known as: Arkansas & UA.


Papers
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Journal ArticleDOI
TL;DR: In this article, the capability of SiC power semiconductor devices, in particular JFET and Schottky barrier diodes (SBDs), for application in high-temperature power electronics was evaluated.
Abstract: This paper evaluates the capability of SiC power semiconductor devices, in particular JFET and Schottky barrier diodes (SBD) for application in high-temperature power electronics. SiC JFETs and SBDs were packaged in high temperature packages to measure the dc characteristics of these SiC devices at ambient temperatures ranging from 25degC (room temperature) up to 450degC. The results show that both devices can operate at 450degC, which is impossible for conventional Si devices, at the expense of significant derating. The current capability of the SiC SBD does not change with temperature, but as expected the JFET current decreases with rising temperatures. A 100 V, 25 W dc-dc converter is used as an example of a high-temperature power-electronics circuit because of circuit simplicity. The converter is designed and built in accordance with the static characteristics of the SiC devices measured under extremely high ambient temperatures, and then tested up to an ambient temperature of 400degC. The conduction loss of the SiC JFET increases slightly with increasing temperatures, as predicted from its dc characteristics, but its switching characteristics hardly change. Thus, SiC devices are well suited for operation in harsh temperature environments like aerospace and automotive applications.

310 citations

Journal ArticleDOI
TL;DR: Data indicate that meat quality differences exist between genotypes with different growth rates and raised in alternative production systems, and the type of diet had little impact on meat quality.

310 citations

Journal ArticleDOI
TL;DR: In this article, the authors present a methodology for quantifying and assessing changes in multiple ecosystems services as a result of land use change using the Integrated Valuation of Ecosystem Services and Tradeoffs (InVEST) model.

310 citations

Journal ArticleDOI
TL;DR: The findings provide opportunities for the international wheat breeding community to intensify research efforts to increase resistance to heat stress during focused developmental stages, and indicate that advancements in heat resistance could come at the expense of higher average yields.
Abstract: Climate change is expected to increase future temperatures, potentially resulting in reduced crop production in many key production regions. Research quantifying the complex relationship between weather variables and wheat yields is rapidly growing, and recent advances have used a variety of model specifications that differ in how temperature data are included in the statistical yield equation. A unique data set that combines Kansas wheat variety field trial outcomes for 1985–2013 with location-specific weather data is used to analyze the effect of weather on wheat yield using regression analysis. Our results indicate that the effect of temperature exposure varies across the September−May growing season. The largest drivers of yield loss are freezing temperatures in the Fall and extreme heat events in the Spring. We also find that the overall effect of warming on yields is negative, even after accounting for the benefits of reduced exposure to freezing temperatures. Our analysis indicates that there exists a tradeoff between average (mean) yield and ability to resist extreme heat across varieties. More-recently released varieties are less able to resist heat than older lines. Our results also indicate that warming effects would be partially offset by increased rainfall in the Spring. Finally, we find that the method used to construct measures of temperature exposure matters for both the predictive performance of the regression model and the forecasted warming impacts on yields.

310 citations

Journal ArticleDOI
TL;DR: The Sexuality Scale as mentioned in this paper is an instrument designed to measure three aspects of human sexuality: sexualesteem, positive regard for and confidence in the capacity to experience one's sexuality in a satisfying and enjoyable way; sexualdepression, defined as the experience of feelings of depression regarding one's sex life; and sexual preoccupation, the tendency to think about sex to an excessive degree.
Abstract: This article describes the development of the Sexuality Scale, an instrument designed to measure three aspects of human sexuality: sexual‐esteem, defined as positive regard for and confidence in the capacity to experience one's sexuality in a satisfying and enjoyable way; sexual‐depression, defined as the experience of feelings of depression regarding one's sex life; and sexual‐preoccupation, defined as the tendency to think about sex to an excessive degree. The procedure involved (a) item construction, selection and subsequent validation through item analysis; and (b) a factor analysis of the items on the Sexuality Scale and the establishment of factorial validity. The results indicated that the three subscales were psychometrically sound, that males reported more sexual‐preoccupation than did females, and that the three subscales have unique intercorrelation patterns. The exploratory nature of these findings are discussed.

309 citations


Authors

Showing all 17387 results

NameH-indexPapersCitations
Robert M. Califf1961561167961
Hugh A. Sampson14781676492
Stephen Boyd138822151205
Nikhil C. Munshi13490667349
Jian-Guo Bian128121980964
Bart Barlogie12677957803
Robert R. Wolfe12456654000
Daniel B. Mark12457678385
E. Magnus Ohman12462268976
Benoît Roux12049362215
Robert C. Haddon11257752712
Rodney J. Bartlett10970056154
Baoshan Xing10982348944
Gareth J. Morgan109101952957
Josep Dalmau10856849331
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202380
2022243
20211,973
20201,889
20191,736
20181,636