We use conceptual and empirical lenses to examine synergies between inquiry science and literacy teaching and learning of K-12 (kindergarten through high school) curriculum. We address two questions: (i) how can reading and writing be used as tools to support inquiry-based science, and (ii) how do reading and writing benefit when embedded in an inquiry-based science setting? After elaborating the theoretical and empirical support for integrated approaches, we discuss how to support their implementation in today's complicated curricular landscape.
Throughout the United States, concern is growing among educators about the numbers of students in secondary schools who do not read well. In response, committed and well-meaning educators are increasingly advocating remedial reading courses for struggling adolescent readers. In this article, Cynthia Greenleaf, Ruth Schoenbach, Christine Cziko, and Faye Mueller offer an alternative vision to remedial reading instruction. The authors describe an instructional framework — Reading Apprenticeship — that is based on a socially and cognitively complex conception of literacy, and examine an Academic Literacy course based on this framework. Through case studies of student reading and analyses of student survey and test score data, they demonstrate that academically underperforming students became more strategic, confident, and knowledgeable readers in the Academic Literacy course. Students in Academic Literacy gained on average what is normally two years of reading growth within one academic year on a standardized test of reading comprehension. Student reflections, interviews, and pre-post surveys from Academic Literacy revealed students' new conceptions of reading for understanding, their growing interest in reading books and favorite authors, their increasing repertoires of strategies for approaching academic reading, and their emerging confidence in themselves as readers and thinkers. They argue for investing resources and effort into demystifying academic reading for their students through ongoing, collaborative inquiry into reading and texts, while providing students with protected time for reading and access to a variety of attractive texts linked to their curriculum. This approach can move students beyond the "literacy ceiling" to increased understanding, motivation, opportunity, and agency as readers and learners. These findings challenge the current policy push for remedial reading programs for poor readers, and invite further research into what factors create successful reading instruction programs for secondary school students.
This study examined the effects of professional development integrating academic literacy and biology instruction on science teachers? instructional practices and students? achievement in science and literacy. The intervention consisted of 10 days of professional development in Reading Apprenticeship, an instructional framework integrating metacognitive inquiry routines into subject-area instruction to make explicit the tacit reasoning processes, problem-solving strategies, and textual features that shape literacy practices in academic disciplines. The study utilized a group-randomized, experimental design and multiple measures of teacher implementation and student learning and targeted groups historically unrepresented in the sciences. Hierarchical linear modeling procedures were used to estimate program impacts. Intervention teachers demonstrated increased support for science literacy learning and use of metacognitive inquiry routines, reading comprehension instruction, and collaborative learning structures compared to controls. Students in treatment classrooms performed better than controls on state standardized assessments in English language arts, reading comprehension, and biology.
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