Step 1: Collect XH–B1 inequalities.
From the statements for paper B1: \[ \begin{aligned} \text{(i)}\ &\text{Bw} < \text{Ct} \text{(ii)}\ &\text{Dv} > \text{Ct} \text{(iii)}\ &\text{Em} < \text{Dv}, \text{Em} > \text{Fu} \text{(iv)}\ &\text{Ar} < \text{Em}, \text{Ar} > \text{Fu} \end{aligned} \]
Step 2: Chain what we can.
From (iv) and (iii): $\text{Fu} < \text{Ar} < \text{Em} < \text{Dv}$. From (ii): $\text{Ct} < \text{Dv}$. From (i) and (ii): $\text{Bw} < \text{Ct} < \text{Dv}$.
Step 3: Decide the topper in B1.
Every candidate is strictly below Dv: - $\text{Ct} < \text{Dv}$ (given), hence $\text{Bw} < \text{Ct} < \text{Dv}$.
- $\text{Em} < \text{Dv}$ (given), and $\text{Ar} < \text{Em}$, $\text{Fu} < \text{Ar}$.
Therefore, \(\boxed{\text{Dv is the highest in XH–B1}}\).
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?
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?