Bibliografia. Uhinak

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Uhinak
Akustika
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marca.gif (847 bytes)Bibliografia
 

Alba J., Ramis J. Determinación indirecta del la velocidad del sonido en el aire mediante resonadores de Helmholtz. Revista Española de Física 14(3) 2000, págs 43-44.

Alba J., Ramis J., Martínez J. A., Pico R., Escuder E., Aplicación de los fenómenos ondulatorios de batido y resonancia para la determinación del volumen de líquido en una botella. Revista Española de Física, V 18, nº 3, 2004, págs. 51-53

Alt R., Wiley S., A generalized wave diagram for moving sources. The Physics Teacher Vol 42, December 2004, pp. 526-527

Ambrose, Shaffer, Steinber, McDermott. An investigation of student understanding of single-slit diffraction and double-slit interference. Am. J. Phys. 67(2) February 1999.

Baxter G. W., Hagenbuch K. M., A student project on wind chimes. Tuning in to standing waves. The Physics Teacher Vol 36, April 1998, pp. 204-208

Berg R. E., Brill D. R., Speed of sound using Lissajous figures. The Physics Teacher Vol 43, January 2005, pp. 36-39

Bracewell R. N. La transformación de Fourier. Investigación y Ciencia, nº 155, Agosto 1989, págs. 56-64.

Bucher M., Diagrams for the acoustic Doppler effect and shock wave cones. Am. J. Phys. 55 (2) February 1987, pp. 176-177

Burch D. S. Fresnel diffraction by a circular aperture. Am. J. Phys. 53 (3) March 1985, pp. 255-260

Clendenning L. M. A laboratory approach to eigenvalue problem. Am. J. Phys. 36 (10) October 1968, pp. 879-881

Crawford, Jr. Ondas, Berkeley Physics Course. Editorial Reverté. (1977).

Dodd N. A., Computer simulation of diffraction patterns. Phys. Educ. Vol. 18, 1983, pp. 294-299

Donges A. A simple derivation of the acoustic Doppler shift formulas. Eur. J. Phys. 19 (1998) pp. 467.

Erlichson H., The classical Doppler effect. Am. J. Phys. 45 (12) december 1977, pp. 1227-1228

Fazio C, Guastella I, Sperandeo-Mineo R M, Tarantino G. Measuring longitudinal wave speed in solids: two methods and half. Eur. J. Phys. 27  (2006), pp. 687-701

Ferguson J. L., Why can we hear but not see around a corner?. Am. J. Phys. 54 (7) July 1986, pp. 661-662

Fetcher N. H., Thwaites S. Física de los tubos de órgano. Investigación y Ciencia, nº 78, Marzo 1983, págs. 74-84.

Grayson D. J. Using education research to develop waves courseware. Computers in Physics 10 (1) Jan/Feb 1996, pp. 30-37

Kádomtsev, Rydnik. Ondas a nuestro alrededor. Colección Física al alcance de todos, editorial Mir (1984).

Khular E., Thyagarajan K., Ghatak A. K., A note on mirage formation. Am. J. Phys. 45 (1) January 1977, pp. 90-92

Klein, Martin. Fresnel integrals. Am. J. Phys. 45 (3) March 1977, pp. 298-299

Gluck P., Ben-Sultan S., Dinur T., Resonance in flask and pipes. The Physics Teacher Vol 44, January 2006, pp. 10-15

Maurines L. Los estudiantes y la propagación de las señales mecánicas: dificultades de una situación de varias variables y procedimiento de simplificación. Enseñanza de las Ciencias, V-10, nº 1, 1992, págs. 49-57.

Mechtly B., Bartlett A. Graphical representations of Fraunhofer interference and diffraction. American Jounal of Physics, 62 (6), June 1994, pp. 501-510

Michelotti G. L., della Giusta G. Fraunhofer diffraction revisited. Physics Education, nº 4, July 1993, pp. 238-242.

Mielenz K. Algorithms for Fresnel diffraction at Rectangular and Circular apertures. J. Res. Natl. Stand. Technol. 103, 497, (1998).

Migulin, Medvedev, Mustel, Parygin. Basic Theory of Oscillations. Mir Publishers Moscow (1983)

Neipp C., Hernández A., Rodes J. J., Márquez A., Beléndez T., Beléndez A., An analysis of the classical Doppler effect. Eur. J. Phys. 24 (2003) pp. 497-505

Newburgh R., Newburgh G. A. M., Finding the equation for a vibrating car antenna. The Physics Teacher, Vol 38, January 2000, pp. 31-34.

Ouseph P. J., Link J. J., Variation of sound in air with temperature. Am. J. Phys. 52 (7) July 1984, pp. 661

Perrine J. O., The Doppler and echo Dopller effect. Am. J. Phys.  12 (1944), pp. 23-28

Peters J. M. H., The deviation and curvature of a light ray. Physics. Education Vol 19, 1984, pp. 200-203

Poon D. C. H. How good is the aproximation "Path difference ≈d·senq "? The Physics Teacher Vol 40, November 2002, pp. 460-462

Rossing T. D. Física de los timbales. Investigación y Ciencia, nº 76, Enero 1983, págs. 84-91.

Saba M., Rosa R A., The Doppler effect of a sound source moving in a circle. The Physics Teacher, Vol 41, February 2003, pp. 89-91.

Spees A. H., Acoustic Doppler effect and phase invariance. Am. J. Phys (24) 1956, pp. 7-10

Se-Yuen Mak, Yee-Kong Ng, Kam-Wah Wu. Measurement of the speed of sound in a metal rod. Physics Education, (35)  2000. pp. 439-445.

Smith G, Loly P. The great beer bottle experiment. Am. J. Phys. 47 (6) June 1979, pp. 515-518

Sobel M. I., Algebraic treatment of two-slit interference. The Physics Teacher Vol 40, October 2002, pp. 402-404.

Stewart M. B. Cornu's spiral and the microcomputer. Am. J. Phys. 54 (3) March 1986, pp. 280-281

Sundberg J. La acústica del canto. Investigación y Ciencia, nº 8, Mayo de 1977, págs. 56-64.

Tang S. H., Tan H.S., Tan K. L. Hsu T.S. Velocity of sound and resonance absorption determination from a low-cost Helmholtz experiment. Eur. J. Phys. (6) 1985  pp.134-138

Turvey K. An undergraduate experiment on the vibration of a cantilever and its application to the determination of Young's modulus. Am. J. Phys. 58 (5) May 1990, pp. 483-487

Velasco S., Román F.L., González A, White J. A., A computer-assisted experiment for the measurement of the temperature dependence of the speed of sound in air. Am. J. Phys. 72 (2) February 2004, pp. 276-279.

Wilson F., Lord A. E., Young's modulus determination via simple, inexpensive static and dynamic measurements. Am. J. Phys. 41, May 1973, pp. 653-656

Wosilait K, Heron P. R. L., Shaffer P. S., McDermott L. C., Addressing student difficulties in applying a wave model to the interference and diffraction of light. Phys. Educ. Res., Am. J. Phys. Suppl. 67 (7) July 1999, pp. S5-S15.

Wu J., Are sound waves isothermal or adiabatic? Am. J. Phys. 58 (7) July 1990, pp. 694-696