Calendar Advanced Lessons with Practice Exam
Author : Paul Sisler
Publisher : Paul Sisler
Page : 184 pages
File Size : 19,37 MB
Release : 2014-06-15
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ISBN :
Author : Paul Sisler
Publisher : Paul Sisler
Page : 184 pages
File Size : 19,37 MB
Release : 2014-06-15
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ISBN :
Author :
Publisher : LiturgyTrainingPublications
Page : 250 pages
File Size : 11,44 MB
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ISBN : 161671008X
Author :
Publisher : UNCG Graduate School
Page : 394 pages
File Size : 34,13 MB
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Author : Princeton Review
Publisher : Princeton Review
Page : 1418 pages
File Size : 26,24 MB
Release : 2012-08-07
Category : Study Aids
ISBN : 0307944921
Profiles every four-year college in the United States, providing detailed information on academic programs, admissions requirements, financial aid, services, housing, athletics, contact names, and campus life.
Author :
Publisher : Wintergreen Orchard House
Page : 836 pages
File Size : 40,2 MB
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ISBN : 1936035375
Author : Lake Forest College
Publisher :
Page : 140 pages
File Size : 21,54 MB
Release : 1903
Category : Universities and colleges
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Author :
Publisher : Wintergreen Orchard House
Page : 930 pages
File Size : 40,11 MB
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ISBN : 1936035332
Author : United States. Bureau of the Census
Publisher :
Page : 68 pages
File Size : 36,93 MB
Release : 1996
Category : School enrollment
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Publisher :
Page : 642 pages
File Size : 39,65 MB
Release : 1991
Category : Education, Higher
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Author : John Hattie
Publisher : Corwin Press
Page : 305 pages
File Size : 34,46 MB
Release : 2016-09-15
Category : Education
ISBN : 1506362974
Rich tasks, collaborative work, number talks, problem-based learning, direct instruction…with so many possible approaches, how do we know which ones work the best? In Visible Learning for Mathematics, six acclaimed educators assert it’s not about which one—it’s about when—and show you how to design high-impact instruction so all students demonstrate more than a year’s worth of mathematics learning for a year spent in school. That’s a high bar, but with the amazing K-12 framework here, you choose the right approach at the right time, depending upon where learners are within three phases of learning: surface, deep, and transfer. This results in “visible” learning because the effect is tangible. The framework is forged out of current research in mathematics combined with John Hattie’s synthesis of more than 15 years of education research involving 300 million students. Chapter by chapter, and equipped with video clips, planning tools, rubrics, and templates, you get the inside track on which instructional strategies to use at each phase of the learning cycle: Surface learning phase: When—through carefully constructed experiences—students explore new concepts and make connections to procedural skills and vocabulary that give shape to developing conceptual understandings. Deep learning phase: When—through the solving of rich high-cognitive tasks and rigorous discussion—students make connections among conceptual ideas, form mathematical generalizations, and apply and practice procedural skills with fluency. Transfer phase: When students can independently think through more complex mathematics, and can plan, investigate, and elaborate as they apply what they know to new mathematical situations. To equip students for higher-level mathematics learning, we have to be clear about where students are, where they need to go, and what it looks like when they get there. Visible Learning for Math brings about powerful, precision teaching for K-12 through intentionally designed guided, collaborative, and independent learning.