When a person has acidosis, their blood is too acidic. Sodium bicarbonate, an alkali, can help by producing hydroxide ions that neutralize excess hydrogen ions, which are responsible for the acidity. This action decreases the acidity of the blood, thereby raising its pH.
The human body's pH level is crucial to maintaining good health. When a person has acidosis, the blood is too acidic, and the pH is often less than the normal range of 7.35 to 7.45. Sodium bicarbonate, a type of alkali, can help treat this condition.
Alkalis such as sodium bicarbonate are basic compounds. When they dissolve in water, they produce hydroxide ions (OH-). These ions can neutralize the excess hydrogen ions (H+) in our body, which are responsible for creating an acidic environment. As a result of this neutralization, the amount of H+ in the body decreases, thus leading to an increase in blood pH, making it less acidic (more alkaline).
So, to put it in simpler terms, the sodium bicarbonate raises the blood's pH by reducing the amount of acid in it - making the blood less acidic and more alkaline.
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O B. conjugate acid to conjugate base
O C. conjugate base to conjugate acid
OD. solute to the amount of solvent in a solution
Answer:
Option C
Explanation:
A buffer aqueous solution consists of
a) either a weak acid along with its conjugate base
b) or a weak base along with its conjugate acid.
This is used to prevent change in the pH of a solution whenever an acid or a base is added. The pH of a buffer depends upon the ratio of base to acid and this ratio is determined by the Ka value and Henderson-Hasselbalch equation. An ideal buffer has equal amounts of acid and conjugate base
Hence, option C is correct
A. 700 years
B. 1,867 years
C. 8,400 years
D. 16,800 years
E. 44,800 years
B)convert joules per nucleus to joules per mole of nuclei
C)convert mass to tons
D)convert mass to energy
Answer:
D
Explanation:
Einstein's equation E = m * c2, allows to determine the energy.
How to determine nuclear binding energy? To achieve it, the mass of the nucleons it is combined and transformed into energy, at the end of the process there is less mass in the system than there was before combining and converting into energy.
Answer:
-1215.9J is the work done
Explanation:
It is possible to find work done in the change of volume of a gas at constant pressure using:
W = -P×ΔV
Where W is work, P is pressure and V is change in volume}
Replacing:
W = -6atm×(5L-3L)
W = -12atmL
As 1atmL = 101,325J, work done in joules is:
-12atmL ×(101.325J / atmL) = -1215.9J is the work done
The value of work done when a volume increases from 3 liters to 5 liters at 6 atm of pressure is -1215.9 Joules.
Workdone on any boby or by the body will be calculated as:
W = -P×ΔV, where
W = workdone
P = applied or exerted pressure = 6 atm
ΔV = change in volume due to workdone = (5-3) L
Negative sign in the formula shows that work is done on the opposite side of the pressure or volume.
On putting all these values on the above equation, we get
W = -6atm × (5L-3L)
W = -12 atmL
We know that, 1 atmL = 101,325 J,
So, workdone in joules will be written as:
-12 atmL × (101.325J / atmL) = -1215.9 J
Hence, -1215.9 J is the workdone.
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