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Course Criteria
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3.00 Credits
Hours: 3 Course ID: 005522 Prepares students to integrate their massage practice into a clinical setting. Includes preparation for student clinics, study of other modalities, study of common pathologies, and ethics for the practice of Therapeutic Massage. Prerequisite: (OST 103 or CLA 131 or AHS 115) and BIO 137 and BIO 139 and MSG 100 and MSG 110 and MSG 125 and MSG 135. Prerequisite or Corequisite: MSG 205 and MSG 210 and MSG 215. Lecture: 3 credits (45 contact hours). Component: Lecture
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3.00 Credits
Hours: 3 Course ID: 001778 The advanced hydraulic systems class will cover design, repair, and troubleshooting of hydraulic systems. Prerequisite: FPX 100, FPX 101 Component: Lecture
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2.00 Credits
Hours: 2 Course ID: 001779 The advanced hydraulic systems lab will cover design, repair, and troubleshooting of hydraulic systems. Prerequisite: FPX 100, FPX101 Component: Laboratory
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3.00 Credits
Hours: 3 Course ID: 001780 Design, repair, and troubleshooting of pneumatic systems will be covered in this course. Prerequisite: FPX 100, FPX 101 Component: Lecture
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2.00 Credits
Hours: 2 Course ID: 001781 Component repair and system troubleshooting will be covered in this lab. Prerequisite: FPX 100, FPX 101 Component: Laboratory
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3.00 Credits
Hours: 3 Course ID: 005259 Introduces electronic/electrical controls as it pertains to hydraulic valve control with the emphasis on automation, robotic and servo control. Lecture: 3 credits (45 contact hours). Prerequisite: (ENGT 110 and FPX 100) or Consent of Instructor. Corequisite: MST 207. Component: Lecture
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2.00 Credits
Hours: 2 Course ID: 005260 Introduces electronic/electrical controls as it pertains to hydraulic valve control with the emphasis on automation, robotic and servo control. Laboratory: 2 credits (90 contact hours). Prerequisite: (ENGT 111 and ENGT 113 and FPX 101) or Consent of Instructor. Corequisite: MST 206. Component: Laboratory
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3.00 Credits
Hours: 3 Course ID: 003841 This course covers the terminology, concepts, and methods used by technicians to describe and maintain all parts of a control system. Covered in length will be basic concepts and terminology, types of control and system components. Measuring instruments, signal conditioning, microprocessors and communication, industrial sensors, and process variable sensors will be covered in this course. Lecture: 30 hrs; Laboratory: 45 hrs. Prerequisite: Consent of Instructor. Component: Laboratory, Lecture
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4.00 Credits
Hours: 4 Course ID: 001783 This course covers the terminology, concepts, and methods used by technicians to describe and maintain all parts of a control system. Part II of Control Systems places an emphasis on manipulation, electric motors control of discrete and continuous processes, process characteristics, methods of analysis, and controller design. Safety will be emphasized throughout this course. Prerequisite: MST 210 Component: Lecture
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2.00 Credits
Hours: 2 Course ID: 003960 Provides an introduction to the theory of robots including terminology, components, and basic programming. This course will probide theory and applications of servo and non-servo robots. Topics covered will include robot types, controllers, manipulators, and basic robotics programming and fluid power systems. This course will provide the basic theory of flexible manufacturing and AC and DC control systems. The student will learn how to develop and set up workcells. Prerequisite: MST 232 Component: Laboratory
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