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21.
Doug Hill Jeff Weingrad Christopher Schemering Lynn Woolley Michael Shore Dick Clark 《Communication Booknotes Quarterly》2013,44(3)
SATURDAY MIGHT: A BACKSTAGE HISTORY OF SATURDAY MIGHT LIVE by Doug Hill and Jeff Weingrad (New York: Beech Tree Books/Morrow, 1986—$17.95) THE SOAP OPERA ENCYCLOPEDIA by Christopher Schemering (New York: Ballantine Books, 1985—$8.95, paper) WARNER BROS. TELEVISION: EVERY SHOW OF THE FIFTIES AND SIXTIES EPISODE-BYEPISODE by Lynn Woolley, et al. (Jefferson, NC: McFarland & Co., 1985—$25.95) THE HISTORY OF AMERICAN BANDSTAND by Michael Shore with Dick Clark (New York: Ballantine Books, 1985—$12.95, paper) A COLLECTOR'S GUIDE TO TV MEMORABILIA by Anthony Slide (Wallace-Homestead Book Co., 580 Waters Edge, Lombard, IL 60148—$13.95, paper) 相似文献
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Shana K. Carpenter Nicholas J. Cepeda Doug Rohrer Sean H. K. Kang Harold Pashler 《Educational Psychology Review》2012,24(3):369-378
Every day, students and instructors are faced with the decision of when to study information. The timing of study, and how it affects memory retention, has been explored for many years in research on human learning. This research has shown that performance on final tests of learning is improved if multiple study sessions are separated—i.e., “spaced” apart—in time rather than massed in immediate succession. In this article, we review research findings of the types of learning that benefit from spaced study, demonstrations of these benefits in educational settings, and recent research on the time intervals during which spaced study should occur in order to maximize memory retention. We conclude with a list of recommendations on how spacing might be incorporated into everyday instruction. 相似文献
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Doctoral graduate research performance (DRP) is recognized as one of the most critical indices for evaluation of the success
of doctoral education. Doctoral graduates with high research performance directly reflect a higher ability in academic research
and academic achievement. Consequently, identifying which factors influence DRP is potentially of great value. This topic
is also challenging because of difficulties in identifying the impact factors on research performance and the feasibility
of the relative data collection. This paper first examines the relationships between the indicators and DRP. After a review
of previous literature, the focus is on the doctoral graduates’ individual factors, advisor factors and learning performance.
Data is collected from graduated doctors from the Science Schools of University of Science and Technology of China (USTC).
Contrary to expectations, our findings indicate that, based on the Chinese context, learning performance does not appear to
be strongly associated with research performance. Individual factors (status of academic origin) do have significant effect
on DRP. The advisor factors (including academic status, academic experience and allocation of energy) show a relatively strong
association with DRP, in terms of both the number of publications and the impact factor of Science Citation Index (SCI) cited
journals. 相似文献
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Invention and Productive Failure activities ask students to generate methods that capture the important properties of some given data (e.g., uncertainty) before being taught the expert solution. Invention and Productive Failure activities are a class of scientific inquiry activities in that students create, implement, and evaluate mathematical models based on data. Yet, lacking sufficient inquiry skills, students often do not actualize the full potential of these activities. We identified key invention strategies in which students often fail to engage: exploratory analysis, peer interaction, self-explanation, and evaluation. A classroom study with 134 students evaluated the effect of supporting these skills on the quality and outcomes of the invention process. Students in the Unguided Invention condition received conventional Invention Activities; students in the Guided Invention condition received complementary metacognitive scaffolding. Students were asked to invent methods for calculating uncertainties in best-fitting lines. Guided Invention students invented methods that included more conceptual features and ranked the given datasets more accurately, although the quality of their mathematical expressions was not improved. At the process level, Guided Invention students revised their methods more frequently and had more and better instances of unprompted self-explanations even on components of the activity that were not supported by the metacognitive scaffolding. Classroom observations are used to demonstrate the effect of the scaffolding on students’ learning behaviours. These results suggest that process guidance in the form of metacognitive scaffolding augments the inherent benefits of Invention Activities and can lead to gains at both domain and inquiry levels. 相似文献
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