Step 1: Analyze option (A). This option suggests assigning permanent responsibility for both healthcare and economy revival to district administrations. While they were actively involved during the crisis, giving them permanent responsibility for all such matters may not be realistic. Such roles are usually coordinated at state/national levels. Hence, (A) is not strongly plausible.
Step 2: Analyze option (B). A task force to review the post-pandemic measures is both logical and practical. Governments commonly review their response to crises to learn lessons, improve systems, and understand effectiveness. Thus, (B) is highly plausible.
Step 3: Analyze option (C). A committee to create a future pandemic management program is also very reasonable. Planning ahead by learning from past experiences minimizes losses in life and economy for future emergencies. Hence, (C) is also plausible.
Step 4: Analyze option (D). Population control as a solution to pandemics is neither directly relevant nor scientifically valid, since pandemics are driven by disease transmission and preparedness, not population size alone. Therefore, (D) is implausible. \[ \boxed{\text{Thus, the plausible actions are (B) and (C).}} \]
If '$\rightarrow$' denotes increasing order of intensity, then the meaning of the words [simmer $\rightarrow$ seethe $\rightarrow$ smolder] is analogous to [break $\rightarrow$ raze $\rightarrow$ ____________]. Which one of the given options is appropriate to fill the blank?
On a given day, how many times will the second-hand and the minute-hand of a clock cross each other during the clock time 12:05:00 hours to 12:55:00 hours?
The chart compares the Installed Capacity (MW) of four power generation technologies, T1, T2, T3, and T4, and their Electricity Generation (MWh) in 1000 hours. The Capacity Factor of a technology is defined as: 
\[ \text{Capacity Factor} = \frac{\text{Electricity Generation (MWh)}}{\text{Installed Capacity (MW)} \times 1000 \; (h)} \] Which one of the given technologies has the highest Capacity Factor?
In the $4\times 4$ array shown, each cell of the first three columns has either a cross (X) or a number as per the rule:

A number equals the count of crosses in its $8$ neighboring cells (left, right, top, bottom, and diagonals). The fourth column is empty. As per this rule, the maximum number of crosses possible in the empty column is