Curriculum mapping initiatives are started with the essential goal of improving student achievement, yet the mapping process can be challenging to navigate or lead. While the main work of curriculum mapping is conducted by classroom teachers, administrators must be actively involved, and they must also take into account the demands curriculum mapping places on teachers. This book provides administrators with the foundational understandings and specific guidance and strategies to effectively support a curriculum mapping initiative in their schools and districts. The authors discuss administrative leadership for curriculum mapping, including the roles and responsibilities of various administrative positions, such as the superintendent, headteacher, and curriculum director, and provide protocols and procedures for writing administrative maps. A Leader's Guide to Curriculum Mapping offers concrete information and suggestions for moving a curriculum mapping initiative forward in a positive manner and ultimately ensuring that curriculum mapping is not only sustained, but is embedded in the cultural consciousness and becomes the natural way of conducting professional curriculum work throughout a learning organization. The book: - Includes brief but necessary coverage of theory and foundational concept - Focuses on administrative leadership with curriculum design in mind and administrative support for systemic change - Provides administrators with guidance, protocols, and step-by-step directions for the stages of a curriculum mapping initiative - Offers practical applications, realistic expectations, and real-life examples - Addresses significant concerns such as time and resources necessary for sustainability.
The Organic Chemistry of Enzyme-Catalyzed Reactions is not a book on enzymes, but rather a book on the general mechanisms involved in chemical reactions involving enzymes. An enzyme is a protein molecule in a plant or animal that causes specific reactions without itself being permanently altered or destroyed. This is a revised edition of a very successful book, which appeals to both academic and industrial markets. Illustrates the organic mechanism associated with each enzyme-catalyzed reaction Makes the connection between organic reaction mechanisms and enzyme mechanisms Compiles the latest information about molecular mechanisms of enzyme reactions Accompanied by clearly drawn structures, schemes, and figures Includes an extensive bibliography on enzyme mechanisms covering the last 30 years Explains how enzymes can accelerate the rates of chemical reactions with high specificity Provides approaches to the design of inhibitors of enzyme-catalyzed reactions Categorizes the cofactors that are appropriate for catalyzing different classes of reactions Shows how chemical enzyme models are used for mechanistic studies Describes catalytic antibody design and mechanism Includes problem sets and solutions for each chapter Written in an informal and didactic style
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