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Course Criteria
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3.00 Credits
A career course leading to MA Department of Early Education and Care (DEEC) certification as Director I. Includes different organizational structures, fiscal affairs, program management, development, evaluation procedures, and public relations. Covers how to provide nutritional programs and reviews state and federal health care policies and procedures. Prerequisite: D.E.E.C. Lead Teacher Certified Co-requisite: Employment in a licensed Child Care facility working directly with preschool-aged children for a minimum of twelve hours per week.
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3.00 Credits
Provides students with the knowledge and understanding of theoretical and practical issues of technology being applied by children, preschool through grade 6. Appropriate software will be examined, educational practices of the internet explored, and direct contact with existing educational programs will be experienced. Prerequisites: EDU 104 (Sophomore status recommended)
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4.00 Credits
Explore the multidisciplinary world of robotics, and its relevance to current humanitarian, social, and environmental concerns. Modeling the fields of science and engineering, this class will be based on teamwork and cooperative problem solving in a supportive, hands on, laboratory environment. Solutions to a series of challenges will be designed, constructed, tested and revised by students working together in groups. A standard, modular, mobile robotics system will be used to design and construct robots capable of carrying out a single task or multiple tasks related to a variety of applications. The role of science, engineering and technology in modern society will also be explored. Prerequisite: None 3 class hours and 3 laboratory hours
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4.00 Credits
As a continuation of EGR 110, this class will be based on teamwork and cooperative problem solving in a supportive, hands-on laboratory environment. Solutions to a series of challenges will be designed, constructed, tested and revised by students working together in groups. Robots will be based on a standard, modular, mobile robotics system with the addition of sensors designed and built by students. A text-based language (similar to C) will be used for programming the robots. Prerequisite: EGR 110
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3.00 Credits
A brief discourse on the fields and functions of engineering, followed by an introduction to computer programming using C++ with emphasis on engineering applications. Topics are fundamentals of C++, including the binary and octal number systems, selection and repetition structures, arrays, functions, classes, class functions, input/output and pointers. Students will write programs to be run on the college' s computers. Prerequisite: MTH 104 2 class hours and 3 laboratory hours
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4.00 Credits
A brief discourse on the fields and functions of engineering followed by an in depth introduction to computer programming using JAVA with emphasis on engineering. Topics are decimal and binary numbers, selection and repetition structures, arrays, methods, classes, input/output and pointers. Students will write programs to be run on the College' s computers. Prerequisite: MTH 104 or adequate score on the Mathematics Placement Examination 3 class hours and 3 laboratory hours
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3.00 Credits
Principles of engineering drawing including orthographic projection, conventions and design. Implementation of assigned problems will be by computer-aided drafting (CAD) and sketching. Prerequisite: EGR 117 2 class hours and 3 laboratory hours
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3.00 Credits
A vector treatment of the equilibrium of particles and rigid bodies. Topics to be included are vector algebra, forces, moments, couples, equations of equilibrium, free body diagrams, graphical techniques, constraints, structures and mechanisms, friction, centroids and moments of inertia, and method of virtual work. Prerequisites: MTH 112 and PHS 111
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3.00 Credits
A study of the methods of determining stresses, strains, and deflections in engineering materials and structures that result from the application of physical loads. Prerequisite: EGR 221
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4.00 Credits
Covers time-domain analysis and techniques for writing and solving system dynamic equations with applications to electronics and other types of circuits. No prior knowledge of electricity or electronics is required. Prerequisites: PHS 111 and MTH 112 3 class hours and 3 laboratory hours
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