<meta name="keywords" content="Savchenko Problems in Physics, Savchenko solutions, physics problems, physics olympiad preparation, IPhO, Jaan Kalda">
−
<meta name="description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
+
<meta name="description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta property="og:title" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
+
<meta property="og:title" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta property="og:image" content="img/logo.png">
−
<meta property="og:description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
+
<meta property="og:description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<title>The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?</title>
+
<title>The angular velocity of the coil is \omega , the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?</title>
$1.5.2.$ The angular velocity of the coil is $\omega$, the radius of the inner cylinder is $r$, and the radius of the outer cylinders is $R$. What are the velocities of the coil and load axis relative to the ground?
<p>To find the speed of the load, consider the speed point $O$ as a superposition of the velocities of translational motion with the speed of the wheel center and the speed of rotation point $O$ relative to the wheel center.</p>
<small>All rights belong to the authors. <br> Commercial use of materials - with the written permission of the authors. <br> alex@savchenkosolutions.com <br></small>
<meta name="keywords" content="Savchenko Problems in Physics, Savchenko solutions, physics problems, physics olympiad preparation, IPhO, Jaan Kalda">
<meta name="keywords" content="Savchenko Problems in Physics, Savchenko solutions, physics problems, physics olympiad preparation, IPhO, Jaan Kalda">
<meta name="description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta name="description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta property="og:title" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta property="og:title" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta property="og:image" content="img/logo.png">
<meta property="og:image" content="img/logo.png">
<meta property="og:description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<meta property="og:description" content="The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?">
<title>The angular velocity of the coil is \omega, the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?</title>
<title>The angular velocity of the coil is \omega , the radius of the inner cylinder is r, and the radius of the outer cylinders is R. What are the velocities of the coil and load axis relative to the ground?</title>
$1.5.2.$ The angular velocity of the coil is $\omega$, the radius of the inner cylinder is $r$, and the radius of the outer cylinders is $R$. What are the velocities of the coil and load axis relative to the ground?
$1.5.2.$ The angular velocity of the coil is $\omega$, the radius of the inner cylinder is $r$, and the radius of the outer cylinders is $R$. What are the velocities of the coil and load axis relative to the ground?
<p>To find the speed of the load, consider the speed point $O$ as a superposition of the velocities of translational motion with the speed of the wheel center and the speed of rotation point $O$ relative to the wheel center.</p>
<p>To find the speed of the load, consider the speed point $O$ as a superposition of the velocities of translational motion with the speed of the wheel center and the speed of rotation point $O$ relative to the wheel center.</p>
<small>All rights belong to the authors. <br> Commercial use of materials - with the written permission of the authors. <br> alex@savchenkosolutions.com <br></small>
<small>All rights belong to the authors. <br> Commercial use of materials - with the written permission of the authors. <br> alex@savchenkosolutions.com <br></small>