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Science graphics and animations for immediate download (buy academic, publishing, and commercial use licences). Published in Nature, Scientific American, New Scientist, BBC, Playboy, NASA, and more...

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Waves15/250
SINE WAVE Arrows Ripple Blue
SINE WAVE Arrows Ripple Blue1970-01-01T00:00:00+00:00Sine wave created by rotating arrows (the phase is determined by the angle).PT32Shttps://d38zjy0x98992m.cloudfront.net/1c20a402-8900-4c73-8857-102757187c1a/SINE_RIPPLE_WAVE_ARROW_Blue_265_xlarge.jpghttps://d38zjy0x98992m.cloudfront.net/1c20a402-8900-4c73-8857-102757187c1a/SINE_RIPPLE_WAVE_ARROW_Blue_265_mp4_hd_video.mp4https://www.scientific.pictures/-/galleries/waves/-/medias/1c20a402-8900-4c73-8857-102757187c1a/pricehttps://www.scientific.pictures/-/galleries/waves/-/medias/1c20a402-8900-4c73-8857-102757187c1a/price
Compression Wave Coloured Phase Shift

Compression Wave Coloured Phase Shift

Compression wave or longitudinal wave shown travelling from left to right in a medium. The particles are first shoved forward by the vibrating surface (the white bar at the left, representing, for example, the surface of a hifi speaker) and then they return to their original positions (they oscillate in same the direction that the wave travels, hence longitudinal). This creates a region of higher pressure and density (compression) that travels along as a wave. This is immediately followed by a zone of lower pressure (or rarefaction, where the particles are further apart). This is how sound propagates in air or water and how p-waves travel during earthquakes. The phase of the particles determines their colour in this animation, giving a sense of the wave progression. This is a high resolution still from the same model that created the animation.
Illustration ID: Compression_Wave_Phase_Colour_Shift_Smooth_12000
Illustration size: 87.9 Mpixels (251 MB uncompressed) - 12000x7324 pixels (40.0x24.4 in / 101.6x62.0 cm at 300 ppi)
Illustration keywords: amplitude, compression, compression wave, displacement, frequency, longitudinal wave, oscillate, oscillating, oscillation, particles, phase, physics, propagate, pulse, pulses, ripple, sinusoidal, sound, sound wave, undulate, undulation, vibrating, vibration, wave, waveform, wavelength, waves
https://d38zjy0x98992m.cloudfront.net/f9d8a7b8-aa55-4e8c-bd39-8d5019dd5525/Compression_Wave_Phase_Colour_Shift_Smooth_12000_xlarge.jpghttps://www.scientific.pictures/-/galleries/waves/-/medias/f9d8a7b8-aa55-4e8c-bd39-8d5019dd5525/pricehttps://www.scientific.pictures/-/galleries/waves/-/medias/f9d8a7b8-aa55-4e8c-bd39-8d5019dd5525/price
Sine Wave Phase Shift Colour
Sine Wave Phase Shift Colour1970-01-01T00:00:00+00:00Sine wave moving against a black and grey grid. The colour of each ball depends on the phase of the wave at that point.PT32Shttps://d38zjy0x98992m.cloudfront.net/0f0ef0da-2ee1-4e11-962a-ffb778118b0e/SINE_WAVE_Ortho_phase_colour_on_black_grid_265_xlarge.jpghttps://d38zjy0x98992m.cloudfront.net/0f0ef0da-2ee1-4e11-962a-ffb778118b0e/SINE_WAVE_Ortho_phase_colour_on_black_grid_265_mp4_hd_video.mp4https://www.scientific.pictures/-/galleries/waves/-/medias/0f0ef0da-2ee1-4e11-962a-ffb778118b0e/pricehttps://www.scientific.pictures/-/galleries/waves/-/medias/0f0ef0da-2ee1-4e11-962a-ffb778118b0e/price
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