Basic technical physics
This one-semester survey of principles of physics for technical students emphasizes practical applications that represent a broad coverage of physics as it relates to thevarious technical areas. The concepts presented allow students to relate the principles of physics to practical job-related applications. The questions and problems at the end of each chapter have been carefully chosen for their realistic application to industry and for their instructional value. The only mathematics prerequisite is the algebra necessary to understand simple formulas. For teaching convenience, the more difficult sections of the text, which are optional, are identified by asterisks in the table of contents.
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acceleration alternating current ammeter angle angular applied atomic axis body calculated capacitance capacitor Celsius circuit coefficient coil components condition for equilibrium constant speed defined density determined diameter direction displacement distance downward electric field electrons engine equal equation example fluid flux force exerted force F forces acting free-body diagram frequency friction force ft/s galvanometer given heat horizontal ideal mechanical advantage increase inductance input force length light linear luminous flux magnetic field magnitude mass maximum measure meter mi/h motion motor moving negative neutrons Newton's second law normal force nucleons nucleus object output particles perpendicular positive charge potential difference potential energy pressure problems pulley quantity radiation resistance resistor resultant force resultant torque rotation scale shown in Fig slug Solution solve static friction surface temperature tension torque U.S. customary units unit upward vector velocity voltage voltmeter volume wave weight wire zero