if you convert all of the following metrics to m^3. Then the first one is the largest number. I know this stuff did it last year
I’ll mark BRAINLIEST!!!!! :)
Answer:
Option (2)
Explanation:
The water in most of the region is generally pumped out of the ground for the purpose of irrigation. This rate of pumping is much higher than the rate of replenishment. The over-pumping of water leads to the lowering of the water table
About 60 to 70% of the water that is used for irrigation purposes does not reach the crop. It is because the water most of the time gets percolated down into the deeper zones. In addition to this, the water also leaks through the fractures that are associated with the canals and increasing rate of evaporation.
Thus, the correct answer is option (2).
Answer:b never reaches the crop hopefully helps
Explanation:
A) adding oxygen
B) adding CO2
C) increasing the pressure
D) decreasing the temperature
Answer : The correct option is, (B) adding
Explanation :
Le-Chatelier's principle : This principle states that if any change in the variables of the reaction, the equilibrium will shift in the direction to minimize the effect.
Option A : adding oxygen
If the concentration of is increased on reactant side then the equilibrium will shift in the direction where decrease of concentration of takes place. Therefore, the equilibrium will shift in the right direction.
Option B : adding
If the concentration of is increased on product side then the equilibrium will shift in the direction where decrease of concentration of takes place. Therefore, the equilibrium will shift in the left direction.
Option C : increasing the pressure
If the pressure of the container is increased then the equilibrium will shift in the direction where the less number of moles of gas molecules is taking place. As the number of moles of gas molecules is greater at the product reactant side and less at product side. So, the equilibrium will shift in the right direction.
Option D : decreasing the temperature
As the given reaction is an exothermic reaction in which the heat is released during a chemical reaction. That means the temperature is decreased on the reactant side. If the temperature is decreased in the equilibrium then the equilibrium will shift in the direction where, temperature is getting increased. Thus, the reaction will shift to the right direction i.e, towards the product.