For a three-bar truss loaded as shown in the figure, the magnitude of the force in the horizontal member AB is __________ N (answer in integer).
We are asked to determine the force in the horizontal member \( AB \) of the truss, which can be done using the method of joints or the method of sections. Since the truss is symmetrical, we can simplify the analysis by using equilibrium equations.
Step 1: Identify the forces and equilibrium.
Let \( F_{AB} \) be the force in the horizontal member \( AB \). The truss is loaded with a 50 N force applied vertically at joint \( C \). Since the truss is symmetrical, the forces in members \( AC \) and \( BC \) will be equal. At joint \( C \), we can set up the equilibrium equations for both the horizontal and vertical directions. The vertical force at joint \( C \) is balanced by the force components of members \( AC \) and \( BC \). The horizontal force at joint \( C \) is balanced by the force in the horizontal member \( AB \).
Step 2: Use equilibrium equations.
For vertical equilibrium at joint \( C \): \[ 2 F_{AC} \sin 45^\circ = 50 \quad \Rightarrow \quad F_{AC} = \frac{50}{2 \sin 45^\circ} = \frac{50}{\sqrt{2}} \approx 35.36 \, {N} \] For horizontal equilibrium at joint \( C \): \[ F_{AB} = F_{AC} \cos 45^\circ = 35.36 \times \cos 45^\circ \approx 35.36 \times 0.707 \approx 25 \, {N} \] Thus, the magnitude of the force in the horizontal member \( AB \) is 25 N.
For a homogeneous, isotropic material, the relation between the shear modulus (\( G \)), Young’s modulus (\( E \)), and Poisson’s ratio (\( \nu \)) is ________?
A simply supported horizontal beam is subjected to a distributed transverse load varying linearly from \( q_0 \) at A to zero at B, as shown in the figure. Which one of the following options is correct?

A uniform symmetric cross-section cantilever beam of length \( L \) is subjected to a transverse force \( P \) at the free end, as shown in the figure. The Young’s modulus of the material is \( E \) and the moment of inertia is \( I \). Ignoring the contributions due to transverse shear, the strain energy stored in the beam is ___________.

In the given figure, plate ABCD in its undeformed configuration (solid line) is a rhombus with all the internal angles being 90°. The lengths of the undeformed diagonals are 20 cm. ABCD deforms as shown by the dotted lines. Upon deformation, diagonal AC reduces to 19.96 cm and BD increases to 20.04 cm. In the given x-y coordinate system, the engineering shear strain \( \gamma_{xy} \) is equal to __________.
For a three-bar truss loaded as shown in the figure, the magnitude of the force in the horizontal member AB is _________ N (answer in integer).

A prismatic vertical column of cross-section \( a \times 0.5a \) and length \( l \) is rigidly fixed at the bottom and free at the top. A compressive force \( P \) is applied along the centroidal axis at the top surface. The Young’s modulus of the material is 200 GPa and the uniaxial yield stress is 400 MPa. If the critical value of \( P \) for yielding and for buckling of the column are equal, the value of \( \frac{l}{a} \) is ____________ (rounded off to one decimal place).

For a three-bar truss loaded as shown in the figure, the magnitude of the force in the horizontal member AB is ____________ N (answer in integer).

Courage : Bravery :: Yearning :
Select the most appropriate option to complete the analogy.
We __________ tennis in the lawn when it suddenly started to rain.
Select the most appropriate option to complete the above sentence.
A 4 × 4 digital image has pixel intensities (U) as shown in the figure. The number of pixels with \( U \leq 4 \) is:

In the given figure, the numbers associated with the rectangle, triangle, and ellipse are 1, 2, and 3, respectively. Which one among the given options is the most appropriate combination of \( P \), \( Q \), and \( R \)?

A rectangle has a length \(L\) and a width \(W\), where \(L>W\). If the width, \(W\), is increased by 10%, which one of the following statements is correct for all values of \(L\) and \(W\)?
Select the most appropriate option to complete the above sentence.