The figure shows a block of mass \(m = 20\) kg attached to a pair of identical linear springs, each having a spring constant \(k = 1000\) N/m. The block oscillates on a frictionless horizontal surface. Assuming free vibrations, the time taken by the block to complete ten oscillations is ............... seconds. (Rounded off to two decimal places) Take \(\pi = 3.14\). 
An explosion at time \(t = 0\) releases energy \(E\) at the origin in a space filled with a gas of density \(\rho\). Subsequently, a hemispherical blast wave propagates radially outwards as shown in the figure.
Let \(R\) denote the radius of the front of the hemispherical blast wave. The radius \(R\) follows the relationship \(R = k t^a E^b \rho^c\), where \(k\) is a dimensionless constant. The value of exponent \(a\) is ................
(Rounded off to one decimal place) 
The figure shows two fluids held by a hinged gate. The atmospheric pressure is \(P_a\) = 100 kPa. The moment per unit width about the base of the hinge is ............... kNm/m. (Rounded off to one decimal place)
Take the acceleration due to gravity to be g = 9.8 m/s². 
An optical flat is used to measure the height difference between a reference slip gauge A and a slip gauge B. Upon viewing via the optical flat using a monochromatic light of wavelength 0.5 \(\mu\)m, 12 fringes were observed over a length of 15 mm of gauge B. If the gauges are placed 45 mm apart, the height difference of the gauges is ............... \(\mu\)m. (Answer in integer) 
A solid part (see figure) of polymer material is to be fabricated by additive manufacturing (AM) in square-shaped layers starting from the bottom of the part working upwards. The nozzle diameter of the AM machine is a/10 mm and the nozzle follows a linear serpentine path parallel to the sides of the square layers with a feed rate of a/5 mm/min. Ignore any tool path motions other than those involved in adding material, and any other delays between layers or the serpentine scan lines. The time taken to fabricate this part is ............... minutes. (Answer in integer) 
The figure shows a wheel rolling without slipping on a horizontal plane with angular velocity \(\omega_1\). A rigid bar PQ is pinned to the wheel at P while the end Q slides on the floor. What is the angular velocity \(\omega_2\) of the bar PQ? 
Two meshing spur gears 1 and 2 with diametral pitch of 8 teeth per mm and an angular velocity ratio \(|\omega_2|/|\omega_1| = 1/4\), have their centers 30 mm apart. The number of teeth on the driver (gear 1) is ................ (Answer in integer) 
The options show frames consisting of rigid bars connected by pin joints. Which one of the frames is non-rigid? 
Which one of the options given represents the feasible region of the linear programming model:
Maximize \(45X_1 + 60X_2\)
\(X_1 \le 45\)
\(X_2 \le 50\)
\(10X_1 + 10X_2 \ge 600\)
\(25X_1 + 5X_2 \le 750\) 
With reference to the Economic Order Quantity (EOQ) model, which one of the options given is correct? 