Schaum's Outline of Theory and Problems of College PhysicsMcGraw-Hill, 1988 - 412 Seiten Confusing Textbooks? Missed Lectures? Tough Test Questions? Fortunately for you, there's Schaum's Outlines. More than 40 million students have trusted Schaum's to help them succeed in the classroom and on exams. Schaum's is the key to faster learning and higher grades in every subject. Each Outline presents all the essential course information in an easy-to-follow, topic-by-topic format. You also get hundreds of examples, solved problems, and practice exercises to test your skills. This Schaum's Outline gives you Practice problems with full explanations that reinforce knowledge Coverage of the most up-to-date developments in your course field In-depth review of practices and applications Fully compatible with your classroom text, Schaum's highlights all the important facts you need to know. Use Schaum's to shorten your study time-and get your best test scores! Schaum's Outlines-Problem Solved. |
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PROBLEMS AND EXAMPLES ALSO FOUND IN THE COMPANION | 1 |
Schaums Electronic Tutor The Mathcad Engine which drives the Electronic Tutor allows every number formula and graph chosen to be completely l... | 5 |
Problem 6 | 6 |
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Schaum's Outline of Theory and Problems of College Physics Frederick J. Bueche,John R. Dennison,Mark Riffe Keine Leseprobe verfügbar - 1997 |
Schaum's Outline of Theory and Problems of College Physics Frederick J. Bueche Keine Leseprobe verfügbar - 1989 |
Häufige Begriffe und Wortgruppen
acceleration angle angular armature atom axis ball Bernoulli's equation block bulk modulus cal/g capacitor centripetal force charge circuit cm/s cm² cm³ coefficient coil Compute constant Coulomb's law density diameter direction displacement distance electric electron energy equation equilibrium Find flow flux force acting force F frequency friction force g mass g/cm³ gives heat Hooke's law horizontal ideal gas inertia kg/kmol kg/m³ lens loop m/s² magnetic field Mathcad mercury mmHg molecules moment of inertia momentum motion moving N/m² object P₁ P₂ particle perpendicular piston plate positive potential difference proton R₁ rad/s radian radius resistance resistor rev/s right-hand rule rotation shown in Fig Solved speed speed of sound spring Supplementary Problems surface T₁ T₂ temperature tension torque v₁ v₂ velocity vertical vibration voltage volume wavelength waves weight wheel wire zero