CIE A LEVEL MECHANICS 1 2nd EDITION BOOK AND WEBSITE LINK
Maths
Price: 1375.00 INR
ISBN:
9780198425199
Publication date:
04/01/2018
Mix MediaCD/DVD
144 pages
246x189mm
Price: 1375.00 INR
ISBN:
9780198425199
Publication date:
04/01/2018
Mix MediaCD/DVD
144 pages
BURGESS ET AL
Providing complete syllabus support (9709), this stretching and practice-focused course builds the advanced skills needed for the latest Cambridge assessments and the transition to higher education. Engaging, real world examples make mathematics relevant to real life.
Rights: World Rights
BURGESS ET AL
Table of contents
Syllabus matching grid; 1 Straight line motion and graphs; 1.1 Displacement-time graphs; 1.2 Velocity-time graphs; 2 Constant acceleration formulae; 2.1 Constant acceleration formulae; 2.2 Vertical motion; 3 Variable acceleration; 3.1 Using differentiation to describe straight line motion; 3.2 Using integration to describe straight line motion; 3.3 Deriving the constant acceleration formulae; Review exercise A; Maths in real-life: Challenging technology in sport; 4 Forces and resultants; 4.1 Resultants; 4.2 Components; 4.3 Forces in equilibrium; 5 Newton's laws; 5.1 Newton's laws; 5.2 Resolving when on an inclined plane; 5.3 Multiple forces; 5.4 Connected particles; 6 Friction; 6.1 Rough horizontal surfaces; 6.2 Rough inclined plane; Review exercise B; Maths in real-life: Understanding the Universe; 7 Work and energy; 7.1 Work; 7.2 Kinetic energy; 7.3 Gravitational potential energy; 7.4 Conservation of energy; 7.5 The work-energy principle; 8 Power; 8.1 Power as rate of doing work; 8.2 Acceleration and variable resistance; 9 Momentum NEW; 9.1 Momentum; 9.2 Collisions; Review exercise C; Maths in real-life: Aerodynamics; Exam-style paper A; Exam-style paper B; Answers; Glossary; Index
BURGESS ET AL
Table of contents
Syllabus matching grid; 1 Straight line motion and graphs; 1.1 Displacement-time graphs; 1.2 Velocity-time graphs; 2 Constant acceleration formulae; 2.1 Constant acceleration formulae; 2.2 Vertical motion; 3 Variable acceleration; 3.1 Using differentiation to describe straight line motion; 3.2 Using integration to describe straight line motion; 3.3 Deriving the constant acceleration formulae; Review exercise A; Maths in real-life: Challenging technology in sport; 4 Forces and resultants; 4.1 Resultants; 4.2 Components; 4.3 Forces in equilibrium; 5 Newton's laws; 5.1 Newton's laws; 5.2 Resolving when on an inclined plane; 5.3 Multiple forces; 5.4 Connected particles; 6 Friction; 6.1 Rough horizontal surfaces; 6.2 Rough inclined plane; Review exercise B; Maths in real-life: Understanding the Universe; 7 Work and energy; 7.1 Work; 7.2 Kinetic energy; 7.3 Gravitational potential energy; 7.4 Conservation of energy; 7.5 The work-energy principle; 8 Power; 8.1 Power as rate of doing work; 8.2 Acceleration and variable resistance; 9 Momentum NEW; 9.1 Momentum; 9.2 Collisions; Review exercise C; Maths in real-life: Aerodynamics; Exam-style paper A; Exam-style paper B; Answers; Glossary; Index

