I guess that depends on what you are comparing the solution to?
In comparison to human blood, it is most certainly a hypertonic solution, because there is a much higher concentration of Na+ and Cl- in the solution than in the blood.
An isotonic solution would only be 0.89% NaCl. See related link for more details.
Iodine crystals are solid, crystalline form of elemental iodine, while iodine solution is a liquid mixture of elemental iodine and either alcohol or water. Iodine crystals are typically used for storage and long-term preservation, while iodine solution is commonly used for disinfection and medical purposes.
it is iodine and potassium iodide solution It's a orange colored solution that consists of Iodine and Potassium Iodide and is used to test a substance for starch. If the color of the solution turns black when put on/in the substance, then the substance is positive for starch.
To prepare iodine solution, dissolve iodine crystals in a mixture of water and potassium iodide (KI). The ratio of iodine to KI will determine the concentration of the solution. The solution should be stored in a dark bottle to prevent degradation from light exposure.
Tincture of Iodine. A "tincture" is a solution made by dissolving a solid product into alcohol.
The Latin name for strong iodine solution is "Liquor Iodi Fortis."
The solution is hypotonic when it is outside of the cell.
The solution in the experiment is hypotonic.
hypotonic
Hypotonic is a concentration of less solutes compared to that of another solution.
Hypotonic Solution
it swells and burst
hypertonic hypertonic
Water moves from a hypotonic solution to a hypertonic solution.
A hypotonic solution has a lower solute concentration compared to the cells it surrounds. When cells are exposed to a hypotonic solution, water will move into the cells through osmosis, causing them to swell or potentially burst.
hypotonic
A hypotonic solution has a lower concentration of solutes compared to the solution it is being compared to. When a cell is placed in a hypotonic solution, water will move into the cell causing it to swell and potentially burst due to osmotic pressure.
A relatively low solute concentration is called hypotonic. In a hypotonic solution, there is a lower concentration of solutes compared to the cell, leading to water moving into the cell through osmosis.