You can only get them by prescription
To find the concentration of undissociated acid, you can use the acid dissociation constant (Ka) with the hydrogen-ion concentration. Rearrange the equation for Ka to solve for the concentration of undissociated acid. In this case, the concentration of undissociated acid would be 0.01 M.
To find the hydrogen-ion concentration, use the equation [H+] = sqrt(Ka * acid concentration). Plugging in the values, the hydrogen-ion concentration is 0.001 M, since sqrt(0.000001 * 0.01) = 0.001.
You find the equation of a graph by finding an equation with a graph.
Plasma is a major component of animal blood. Someone can find plasma in the blood of mammals such as goats or cows. It is important to note that plasma from one animal varies greatly from that of a different animal.
Plasma can be found in the stars, solar air, in the sun and also in fusion.
in your blood
The pH after mixing two buffers can be calculated using the Henderson-Hasselbalch equation, pH = pKa + log([A-]/[HA]), where [A-] is the concentration of conjugate base and [HA] is the concentration of the weak acid. Given pH of 4 and 6, the pKa can be determined and used in the equation to find the final pH value after mixing.
One can find more information about plasma lights by going to the Instructables website. The website includes content about plasma globe tricks that are not commonly known.
You can find plasma TV reviews online at http://www.consumersearch.com/plasma-tv. You should be able to sort them by price to see which one will best suit you and your budget.
To find the molarity of ammonia solution, first calculate the concentration of OH- ions in the solution using the pH value. From there, use the Kb value to find the concentration of NH3. Finally, convert the concentration of NH3 to molarity to get the answer.
If the concentration of H+ is 0.0020 M, the concentration of OH- can be calculated using the equation Kw = [H+][OH-]. Since Kw is a constant (1.0 x 10^-14 at 25°C), you can rearrange the equation to find the concentration of OH-. In this case, [OH-] = Kw / [H+] = 1.0 x 10^-14 / 0.0020 = 5.0 x 10^-12 M.