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astrosander edited
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<meta name="viewport" content="width=device-width, initial-scale=1.0">
<meta http-equiv="content-language" content="en">
<meta name="keywords" content="Savchenko Problems in Physics, Savchenko solutions, physics problems, physics olympiad preparation, IPhO, Jaan Kalda">
− <meta name="description" content="The largest dataset of solutions of 'Savchenko. Problems in Physics'. Savchenko’s Problems in General Physics is widely used to prepare for olympiads and it is a useful tool to
−master and sharpen your skills and techniques in comptetitive problem solving. Some of these problems were a source
−of inspiration for Jaan Kalda’s handouts and to some NBPhO problems. You may find problems from old IPhO
−papers.">
+ <meta name="description" content="The motion of the beam on the oscilloscope screen is described by plots of x and y coordinates versus time. What picture will appear on the screen when au_y = au_x, au_x/3, 3 au_x? Consider the two cases (see figure 1.1.17). In case a, the horizontal lines are almost invisible on the screen. Why? At what ratio of au_x and au_y in case b is the trajectory of the beam on the screen closed?">
<meta name="author" content="Aliaksandr Melnichenka">
<meta name="date" content="2023-10" scheme="YYYY-MM">
− <meta property="og:title" content="Savchenko Solutions">
+ <meta property="og:title" content="The motion of the beam on the oscilloscope screen is described by plots of x and y coordinates versus time. What picture will appear on the screen when au_y = au_x, au_x/3, 3 au_x? Consider the two cases (see figure 1.1.17). In case a, the horizontal lines are almost invisible on the screen. Why? At what ratio of au_x and au_y in case b is the trajectory of the beam on the screen closed?">
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− <meta property="og:description" content="A website with solutions to physics problems from Savchenko Textbook">
+ <meta property="og:description" content="The motion of the beam on the oscilloscope screen is described by plots of x and y coordinates versus time. What picture will appear on the screen when au_y = au_x, au_x/3, 3 au_x? Consider the two cases (see figure 1.1.17). In case a, the horizontal lines are almost invisible on the screen. Why? At what ratio of au_x and au_y in case b is the trajectory of the beam on the screen closed?">
<meta name="yandex-verification" content="6cfda41f74038368">
− <title>Savchenko Solutions</title>
+ <title>The motion of the beam on the oscilloscope screen is described by plots of x and y coordinates versus time. What picture will appear on the screen when au_y = au_x, au_x/3, 3 au_x? Consider the two cases (see figure 1.1.17). In case a, the horizontal lines are almost invisible on the screen. Why? At what ratio of au_x and au_y in case b is the trajectory of the beam on the screen closed?</title>
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