The correct option is B 1.5 mm
Applying equation of continuity for the flow section,
Flowrate: Q=Av
⇒Q=A1v1=A2v2=15 L/min
=15×10−360=2.5×10−4 m3/s
⇒v1=QA1=2.5×10−42×10−4=1.25 m/s
& v2=QA2=2.5×10−40.5×10−4=5.0 m/s
Since the elevation is same for the horzontal section AB, applying Bernoulli's equation gives:
ΔP=12ρair(v22−v21) ...(i)
where v1=vA & v2=vB
ΔP=PA−PB
Because AA>AB, hence vA<vB and in accordance with Bernoulli's theorem, PA>PB
The pressure difference can be related with height difference in water columns.
ΔP=ρwgh ...(ii)
From Eq.(i) and (ii),
ρwgh=12ρair(v22−v21)
h=ρair2ρwg(v22−v21)
On substituting the values, we get,
h=1.322×103×10[(5)2−(1.25)2]
⇒h=1.54×10−3 m
∴h≃1.5 mm