Made more relevant descriptions

astrosander правка от
правка #2722 предыдущая #2661 GitHub 1e45af0 ← раньше позже →
@@ -6,17 +6,14 @@
<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="A radar determines the coordinates of a flying airplane by measuring the angle between the direction to the North Pole and the direction to the airplane and the distance from the radar to the airplane. At some point in time, the position of the airplane was determined by the coordinates: angle \alpha_1 = 44^{\circ}, distance R_1 = 100\;km. At a time interval of 5\;s after this moment, the coordinates of the airplane on the radar: angle \alpha_2 = 46^{\circ}, distance R_2 = 100\;km. In a Cartesian coordinate system with the y-axis pointing north and with radar at the origin, represent the position of the airplane at both moments of time; determine the modulus and direction of its velocity. Count the angle in a clockwise direction. ">
<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="A radar determines the coordinates of a flying airplane by measuring the angle between the direction to the North Pole and the direction to the airplane and the distance from the radar to the airplane. At some point in time, the position of the airplane was determined by the coordinates: angle \alpha_1 = 44^{\circ}, distance R_1 = 100\;km. At a time interval of 5\;s after this moment, the coordinates of the airplane on the radar: angle \alpha_2 = 46^{\circ}, distance R_2 = 100\;km. In a Cartesian coordinate system with the y-axis pointing north and with radar at the origin, represent the position of the airplane at both moments of time; determine the modulus and direction of its velocity. Count the angle in a clockwise direction. ">
<meta property="og:image" content="img/logo.png">
− <meta property="og:description" content="A website with solutions to physics problems from Savchenko Textbook">
+ <meta property="og:description" content="A radar determines the coordinates of a flying airplane by measuring the angle between the direction to the North Pole and the direction to the airplane and the distance from the radar to the airplane. At some point in time, the position of the airplane was determined by the coordinates: angle \alpha_1 = 44^{\circ}, distance R_1 = 100\;km. At a time interval of 5\;s after this moment, the coordinates of the airplane on the radar: angle \alpha_2 = 46^{\circ}, distance R_2 = 100\;km. In a Cartesian coordinate system with the y-axis pointing north and with radar at the origin, represent the position of the airplane at both moments of time; determine the modulus and direction of its velocity. Count the angle in a clockwise direction. ">
<meta name="yandex-verification" content="6cfda41f74038368">
− <title>Savchenko Solutions</title>
+ <title>A radar determines the coordinates of a flying airplane by measuring the angle between the direction to the North Pole and the direction to the airplane and the distance from the radar to the airplane. At some point in time, the position of the airplane was determined by the coordinates: angle \alpha_1 = 44^{\circ}, distance R_1 = 100\;km. At a time interval of 5\;s after this moment, the coordinates of the airplane on the radar: angle \alpha_2 = 46^{\circ}, distance R_2 = 100\;km. In a Cartesian coordinate system with the y-axis pointing north and with radar at the origin, represent the position of the airplane at both moments of time; determine the modulus and direction of its velocity. Count the angle in a clockwise direction. </title>
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<link rel="icon" href="https://savchenko-physics.github.io/img/logo.png" type="image/png">
<script src="https://savchenko-physics.github.io/js/jquery-1.10.1.min.js"></script>
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