Answer:
9,000 kg/ms^2
Step-by-step explanation:
The computation of the pressure fall across the valve is shown below:
It is to be computed by using the following formula
![\Delta P = (1)/(2)* K* P* v^2](https://img.qammunity.org/2021/formulas/physics/college/anfrcn7gru4ohzh2o3as7t7pul666wirwm.png)
where,
= Fall in pressure
k = Coefficent loss
P = Loss of density
V = velocity of water
But before reach to the final solution first we have to determine the loss of density which is
![P = (r)/(g)\\\\ = (9,800 N/m^(3))/(9.81 m/s^(2))\\\\ = 999kg/m^(3)\\\\ = 1000kg/m^(3)](https://img.qammunity.org/2021/formulas/physics/college/kgfsr0kdvcjf3uk423uvydppg7wtbratw8.png)
Now put all other values to the given formula
So,
![= 2 * (1)/(2) * 1000 * 3^2 \\\\ = 9,000 kg/ms^2](https://img.qammunity.org/2021/formulas/physics/college/wg9mlokhu0noltxjzat8niazjxnbsibuwg.png)