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Institution

Northern Illinois University

EducationDeKalb, Illinois, United States
About: Northern Illinois University is a education organization based out in DeKalb, Illinois, United States. It is known for research contribution in the topics: Large Hadron Collider & Population. The organization has 8818 authors who have published 20008 publications receiving 632341 citations. The organization is also known as: NIU.


Papers
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Journal ArticleDOI
TL;DR: In this paper, the authors draw upon the experience of a randomized field experiment to point out the hazards of the assumption that program clients uniformly receive the services purportedly available, and find marked differences among clients in the amount of actual service received during participation in the program evaluated.

254 citations

Journal ArticleDOI
TL;DR: In a follow-up study, this article examined the influence of individual interest as a moderator of situational factors designed to catch and hold task interest, finding that catch promoted motivation among participants with low individual interest in math (IIM) but hampered motivation among those with high IIM.
Abstract: Individual interest was examined as a moderator of effects of situational factors designed to catch and hold task interest. In Study 1, 96 college students learned a math technique with materials enhanced with collative features (catch) versus not. Catch promoted motivation among participants with low individual interest in math (IIM) but hampered motivation among those with high IIM. In Study 2 (n = 145), catch was crossed with a hold manipulation, emphasizing utility. Effects of each manipulation depended on IIM. The catch results were similar to those in Study 1. Hold promoted motivation among participants with high IIM and undermined it among participants with low IIM. Discussion centers on the intersection of individual and situational interest.

253 citations

Journal ArticleDOI
TL;DR: In this paper, high basal debris loads up to 1.5 m thick of pure debris and rapid glacial flow, which can be more than 3000 m a−1, combine to produce large volumes of siliciclastic glacimarine sediment at some of the highest sediment accumulation rates on record.

253 citations

Journal ArticleDOI
TL;DR: The present study concludes that PPC is distinguished by its pattern of cortical connections with the somatic sensory, auditory and visual areas, and with areas Fr2, and VLO/MO, in addition to its exclusive thalamic connectivity with LD, LP and Po.
Abstract: Anatomical and functional findings support the contention that there is a distinct posterior parietal cortical area (PPC) in the rat, situated between the rostrally adjacent hindlimb sensorimotor area and the caudally adjacent secondary visual areas. The PPC is distinguished from these areas by receiving thalamic afferents from the lateral dorsal (LD), lateral posterior (LP), and posterior (Po) nuclei, in the absence of input from the ventrobasal complex (VB) or dorsal lateral geniculate (DLG) nuclei. Behavioral studies have demonstrated that PPC is involved in spatial orientation and directed attention. In the present study we used fluorescent retrograde axonal tracers primarily to investigate the cortical connections of PPC, in order to determine the organization of the circuitry by which PPC is likely to participate in these functions, and also to determine how the topography of its thalamic connections differs from that of neighboring cortical areas. The cortical connections of PPC involve the ventrolateral (VLO) and medial (MO) orbital areas, medial agranular cortex (area Fr2), portions of somatic sensory areas Par1 and Par2, secondary visual areas Oc2M and Oc2L, auditory area Tel, and retrosplenial cortex. The secondary visual areas Oc2L and Oc2M have cortical connections which are similar to those of PPC, but are restricted within orbital cortex to area VLO, and within area Fr2 to its caudal portion, and do not involve auditory area Te1. The cortical connections of hindlimb cortex are largely restricted to somatic sensory and motor areas. Retrosplenial cortex, which is medially adjacent to PPC, has cortical connections that are prominent with visual cortex, do not involve somatic sensory or auditory cortex, and include the presubiculum. We conclude that PPC is distinguished by its pattern of cortical connections with the somatic sensory, auditory and visual areas, and with areas Fr2, and VLO/MO, in addition to its exclusive thalamic connectivity with LD, LP and Po. Because recent behavioral studies indicate that PPC, Fr2 and VLO are involved in directed attention and spatial learning, we suggest that the interconnections among these three cortical areas represent a major component of the circuitry for these functions in rats.

252 citations

Journal ArticleDOI
TL;DR: A robust adaptive sliding-mode controller is designed for a boost converter with an unknown resistive load and external input voltage, and the robustness of the adaptive controller to input voltage and load uncertainties and variations is tested experimentally.
Abstract: In this paper, a robust adaptive sliding-mode controller is designed for a boost converter with an unknown resistive load and external input voltage. Adaptation laws are designed using state observers. The closed-loop system for the boost converter is shown to be asymptotically stable. Finally, the robustness of the adaptive controller to input voltage and load uncertainties and variations is tested experimentally.

252 citations


Authors

Showing all 8909 results

NameH-indexPapersCitations
Douglas R. Green182661145944
Thomas J. Smith1401775113919
W. Kozanecki138149899758
Christophe Royon134145390249
Eric Lancon131108484629
Ahmimed Ouraou131107581695
Jean-Francois Laporte12991077899
Bruno Mansoulie12992379222
Jahred Adelman129122081695
Maarten Boonekamp129100579425
Laurent Chevalier12998280840
Nathalie Besson12995478653
Claude Guyot12992077544
Ewelina Lobodzinska12892874414
Rosy Nicolaidou12894876056
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202335
2022133
2021751
2020702
2019735
2018704