Solubility, the phenomenon of dissolution of solute in solvent to give a homogenous system, is one of the important parameters to achieve desired concentration of drug in systemic circulation for desired (anticipated) pharmacological response.
New insight into science that seems, on its surface, exceedingly simple—what happens when you add salt to water—could ultimately lead to a better understanding of biochemical processes in cells and perhaps advance sources of clean energy.
Water's extensive capability to dissolve a variety of molecules has earned it the designation of “universal solvent,” and it is this ability that makes water such an invaluable life-sustaining force. On a biological level, water's role as a solvent helps cells transport and use substances like oxygen or nutrients.
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Answer:
Solubility, the phenomenon of dissolution of solute in solvent to give a homogenous system, is one of the important parameters to achieve desired concentration of drug in systemic circulation for desired (anticipated) pharmacological response.
New insight into science that seems, on its surface, exceedingly simple—what happens when you add salt to water—could ultimately lead to a better understanding of biochemical processes in cells and perhaps advance sources of clean energy.
Water's extensive capability to dissolve a variety of molecules has earned it the designation of “universal solvent,” and it is this ability that makes water such an invaluable life-sustaining force. On a biological level, water's role as a solvent helps cells transport and use substances like oxygen or nutrients.