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Originally published in 1915, this book presents an account of the principles of harmonic motion and their application in a laboratory environment.
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Originally published in 1915, this book presents an account of the principles of harmonic motion and their application in a laboratory environment.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 104
- Erscheinungstermin: 27. November 2013
- Englisch
- Abmessung: 216mm x 140mm x 6mm
- Gewicht: 143g
- ISBN-13: 9781107650459
- ISBN-10: 1107650453
- Artikelnr.: 40843355
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
- Verlag: Cambridge University Press
- Seitenzahl: 104
- Erscheinungstermin: 27. November 2013
- Englisch
- Abmessung: 216mm x 140mm x 6mm
- Gewicht: 143g
- ISBN-13: 9781107650459
- ISBN-10: 1107650453
- Artikelnr.: 40843355
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
1. Elementary theory of harmonic motion
2. Experimental work in harmonic motion
Experiment 1. Determination of g by a simple pendulum
Experiment 2. Harmonic motion of a body suspended by a spring
Experiment 3. Harmonic motion of a rigid body suspended by a torsion wire
Experiment 4. Study of a system with variable moment of inertia
Experiment 5. Dynamical determination of ratio of couple to twist for a torsion wire
Experiment 6. Comparison of the moments of inertia of two bodies
Experiment 7. Experiment with a pair of inertia bars
Experiment 8. Determination of the moment of inertia of a rigid pendulum
Experiment 9. Experiment on a pendulum with variable moment of inertia
Experiment 10. Determination of g by a rigid pendulum
Experiment 11. Pendulum on a yielding support
Experiment 12. Determination of the radius of curvature of a concave mirror by the oscillations of a sphere rolling in it
Experiment 13. Determination of g by the oscillations of a rod rolling on a cylinder
Experiment 14. Study of a vibrating system with two degrees of freedom
Note 1. On the vibration of a body suspended from a light spring
Note 2. Periodic time of a pendulum vibrating through a finite arc
Note 3. Periodic time for finite motion
Note 4. Periodic times of a pendulum with two degrees of freedom.
2. Experimental work in harmonic motion
Experiment 1. Determination of g by a simple pendulum
Experiment 2. Harmonic motion of a body suspended by a spring
Experiment 3. Harmonic motion of a rigid body suspended by a torsion wire
Experiment 4. Study of a system with variable moment of inertia
Experiment 5. Dynamical determination of ratio of couple to twist for a torsion wire
Experiment 6. Comparison of the moments of inertia of two bodies
Experiment 7. Experiment with a pair of inertia bars
Experiment 8. Determination of the moment of inertia of a rigid pendulum
Experiment 9. Experiment on a pendulum with variable moment of inertia
Experiment 10. Determination of g by a rigid pendulum
Experiment 11. Pendulum on a yielding support
Experiment 12. Determination of the radius of curvature of a concave mirror by the oscillations of a sphere rolling in it
Experiment 13. Determination of g by the oscillations of a rod rolling on a cylinder
Experiment 14. Study of a vibrating system with two degrees of freedom
Note 1. On the vibration of a body suspended from a light spring
Note 2. Periodic time of a pendulum vibrating through a finite arc
Note 3. Periodic time for finite motion
Note 4. Periodic times of a pendulum with two degrees of freedom.
1. Elementary theory of harmonic motion
2. Experimental work in harmonic motion
Experiment 1. Determination of g by a simple pendulum
Experiment 2. Harmonic motion of a body suspended by a spring
Experiment 3. Harmonic motion of a rigid body suspended by a torsion wire
Experiment 4. Study of a system with variable moment of inertia
Experiment 5. Dynamical determination of ratio of couple to twist for a torsion wire
Experiment 6. Comparison of the moments of inertia of two bodies
Experiment 7. Experiment with a pair of inertia bars
Experiment 8. Determination of the moment of inertia of a rigid pendulum
Experiment 9. Experiment on a pendulum with variable moment of inertia
Experiment 10. Determination of g by a rigid pendulum
Experiment 11. Pendulum on a yielding support
Experiment 12. Determination of the radius of curvature of a concave mirror by the oscillations of a sphere rolling in it
Experiment 13. Determination of g by the oscillations of a rod rolling on a cylinder
Experiment 14. Study of a vibrating system with two degrees of freedom
Note 1. On the vibration of a body suspended from a light spring
Note 2. Periodic time of a pendulum vibrating through a finite arc
Note 3. Periodic time for finite motion
Note 4. Periodic times of a pendulum with two degrees of freedom.
2. Experimental work in harmonic motion
Experiment 1. Determination of g by a simple pendulum
Experiment 2. Harmonic motion of a body suspended by a spring
Experiment 3. Harmonic motion of a rigid body suspended by a torsion wire
Experiment 4. Study of a system with variable moment of inertia
Experiment 5. Dynamical determination of ratio of couple to twist for a torsion wire
Experiment 6. Comparison of the moments of inertia of two bodies
Experiment 7. Experiment with a pair of inertia bars
Experiment 8. Determination of the moment of inertia of a rigid pendulum
Experiment 9. Experiment on a pendulum with variable moment of inertia
Experiment 10. Determination of g by a rigid pendulum
Experiment 11. Pendulum on a yielding support
Experiment 12. Determination of the radius of curvature of a concave mirror by the oscillations of a sphere rolling in it
Experiment 13. Determination of g by the oscillations of a rod rolling on a cylinder
Experiment 14. Study of a vibrating system with two degrees of freedom
Note 1. On the vibration of a body suspended from a light spring
Note 2. Periodic time of a pendulum vibrating through a finite arc
Note 3. Periodic time for finite motion
Note 4. Periodic times of a pendulum with two degrees of freedom.