366753 A copper and a tungsten plate having a thickness \(d\) each are riveted together so that at \(0^\circ C\) they form a flat bimetallic plate. Find the average radius of the curvature of this plate at temperature T. The coefficient of linear expansion for Copper and tungsten are \(\alpha_{C u}\) and \(\alpha_{t}\).
366754
As a result of a temperature rise of \(32^\circ C\), a bar with a crack at its centre buckles upward as shown in the figure. If the fixed distance is \({L_0} = 3.77\;m\) and the coefficient of linear expansion is \(25 \times {10^{ - 6}}/^\circ C\), find \(x\), the distance to which the centre rises.
366753 A copper and a tungsten plate having a thickness \(d\) each are riveted together so that at \(0^\circ C\) they form a flat bimetallic plate. Find the average radius of the curvature of this plate at temperature T. The coefficient of linear expansion for Copper and tungsten are \(\alpha_{C u}\) and \(\alpha_{t}\).
366754
As a result of a temperature rise of \(32^\circ C\), a bar with a crack at its centre buckles upward as shown in the figure. If the fixed distance is \({L_0} = 3.77\;m\) and the coefficient of linear expansion is \(25 \times {10^{ - 6}}/^\circ C\), find \(x\), the distance to which the centre rises.
366753 A copper and a tungsten plate having a thickness \(d\) each are riveted together so that at \(0^\circ C\) they form a flat bimetallic plate. Find the average radius of the curvature of this plate at temperature T. The coefficient of linear expansion for Copper and tungsten are \(\alpha_{C u}\) and \(\alpha_{t}\).
366754
As a result of a temperature rise of \(32^\circ C\), a bar with a crack at its centre buckles upward as shown in the figure. If the fixed distance is \({L_0} = 3.77\;m\) and the coefficient of linear expansion is \(25 \times {10^{ - 6}}/^\circ C\), find \(x\), the distance to which the centre rises.
366753 A copper and a tungsten plate having a thickness \(d\) each are riveted together so that at \(0^\circ C\) they form a flat bimetallic plate. Find the average radius of the curvature of this plate at temperature T. The coefficient of linear expansion for Copper and tungsten are \(\alpha_{C u}\) and \(\alpha_{t}\).
366754
As a result of a temperature rise of \(32^\circ C\), a bar with a crack at its centre buckles upward as shown in the figure. If the fixed distance is \({L_0} = 3.77\;m\) and the coefficient of linear expansion is \(25 \times {10^{ - 6}}/^\circ C\), find \(x\), the distance to which the centre rises.