(eBook PDF) How Things Work, Binder Ready
Version: The Physics of Everyday Life 6th
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,HOW THINGS WORK
T H E P H Y S I C S O F E V E R Y D AY L I F E
SIXTH EDITION
LOUIS A. BLOOMFIELD
,vi Foreword
These examples are particularly inspiring to a teacher, book an interesting and enlightening read and will go
because they tell you that the students are not just learn- away comforted in that the world is not so strange and
ing the material presented in class but they are then able inexplicable after all.
to apply that understanding to new situations in a useful
way, something that happens far too seldom in science Carl Wieman
courses. Nobel Laureate in Physics 2001
Whether a curious layperson, a trained physicist, or a CASE/Carnegie US University Professor
beginning physics student, most everyone will find this
, Contents
CHAPTER 1 T H E L AW S OF M OTI ON, PART 1 1
Active Learning Experiment: Removing a Tablecloth from a Table 1
Chapter Itinerary 2
1.1 Skating 2
(inertia, coasting, vector quantities, position, velocity, force, acceleration, mass,
net force, Newton’s first and second laws, inertial frames of reference, units)
1.2 Falling Balls 12
(gravity, weight, constant acceleration, projectile motion, vector components)
1.3 Ramps 21
(support forces, Newton’s third law, energy, work, conservation of energy,
kinetic and potential energies, gravitational potential energy, ramps, mechanical
advantage)
Epilogue for Chapter 1 31 / Explanation: Removing a Tablecloth
from a Table 31 / Chapter Summary and Important Laws and
Equations 31
CHAPTER 2 T H E L AW S OF M OTI ON, PART 2 33
Active Learning Experiment: A Spinning Pie Dish 33
Chapter Itinerary 34
2.1 Seesaws 34
(rotational inertia; angular velocity; torque; angular acceleration; rotational mass;
net torque; Newton’s first, second, and third laws of rotation; centers of mass and
gravity; levers; balance)
2.2 Wheels 48
(friction, traction, ordered and thermal energies, wheels, bearings, kinetic energy,
power, rotational work)
2.3 Bumper Cars 59
(momentum, impulse, conservation of momentum, angular momentum, angular
impulse, conservation of angular momentum, gradients, potential energy,
acceleration, and forces)
Epilogue for Chapter 2 70 / Explanation: A Spinning Pie Dish 70 /
Chapter Summary and Important Laws and Equations 70
vii
Version: The Physics of Everyday Life 6th
Edition install download
https://ebookluna.com/product/ebook-pdf-how-things-work-binder-
ready-version-the-physics-of-everyday-life-6th-edition/
Download more ebook instantly today - Get yours now at ebookluna.com
,HOW THINGS WORK
T H E P H Y S I C S O F E V E R Y D AY L I F E
SIXTH EDITION
LOUIS A. BLOOMFIELD
,vi Foreword
These examples are particularly inspiring to a teacher, book an interesting and enlightening read and will go
because they tell you that the students are not just learn- away comforted in that the world is not so strange and
ing the material presented in class but they are then able inexplicable after all.
to apply that understanding to new situations in a useful
way, something that happens far too seldom in science Carl Wieman
courses. Nobel Laureate in Physics 2001
Whether a curious layperson, a trained physicist, or a CASE/Carnegie US University Professor
beginning physics student, most everyone will find this
, Contents
CHAPTER 1 T H E L AW S OF M OTI ON, PART 1 1
Active Learning Experiment: Removing a Tablecloth from a Table 1
Chapter Itinerary 2
1.1 Skating 2
(inertia, coasting, vector quantities, position, velocity, force, acceleration, mass,
net force, Newton’s first and second laws, inertial frames of reference, units)
1.2 Falling Balls 12
(gravity, weight, constant acceleration, projectile motion, vector components)
1.3 Ramps 21
(support forces, Newton’s third law, energy, work, conservation of energy,
kinetic and potential energies, gravitational potential energy, ramps, mechanical
advantage)
Epilogue for Chapter 1 31 / Explanation: Removing a Tablecloth
from a Table 31 / Chapter Summary and Important Laws and
Equations 31
CHAPTER 2 T H E L AW S OF M OTI ON, PART 2 33
Active Learning Experiment: A Spinning Pie Dish 33
Chapter Itinerary 34
2.1 Seesaws 34
(rotational inertia; angular velocity; torque; angular acceleration; rotational mass;
net torque; Newton’s first, second, and third laws of rotation; centers of mass and
gravity; levers; balance)
2.2 Wheels 48
(friction, traction, ordered and thermal energies, wheels, bearings, kinetic energy,
power, rotational work)
2.3 Bumper Cars 59
(momentum, impulse, conservation of momentum, angular momentum, angular
impulse, conservation of angular momentum, gradients, potential energy,
acceleration, and forces)
Epilogue for Chapter 2 70 / Explanation: A Spinning Pie Dish 70 /
Chapter Summary and Important Laws and Equations 70
vii