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Benedict's solution typically contains copper(II) sulfate, sodium citrate, and sodium carbonate. The exact composition can vary, but a common formulation is 17.3 g copper(II) sulfate, 100 g sodium citrate, and 173 g sodium carbonate per liter of water.
Sodium citrate is composed of around 13% sodium by weight. This means that 1 gram of sodium citrate contains roughly 130 milligrams of sodium.
Yes, sodium citrate is an electrolyte. It can dissociate into sodium ions (Na+) and citrate ions in solution, which can conduct electricity. Sodium citrate is often used in electrolyte solutions for medical or scientific purposes.
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Benedict's reagent is an aqueous solution of copper (II) sulfate, sodium carbonate, sodium citrate dihydrate and 2,5-difluorotoluene.
To prepare a 1% solution of sodium citrate, you would mix 1 gram of sodium citrate with 99 grams of water (for a total of 100 grams solution). Stir the mixture until the sodium citrate is fully dissolved in the water.
Sodium citrate is a salt that acts as a preservative due to its ability to maintain the pH of certain foods and inhibit the growth of microbes. However, it is not considered a preservative in the traditional sense like other chemical preservatives added to foods.
Sodium citrate has a chemical formula of Na3C6H5O7. This means it contains 3 sodium atoms, 6 carbon atoms, 5 hydrogen atoms, and 7 oxygen atoms. In total, there are 21 atoms in a molecule of sodium citrate.
Each 200ml contains- 1) Sodium Chloride= 250mg 2) Potassium Chloride= 30 mg 3) Sodium Citrate = 580 mg Calculate osmolarity of Sodium, Poatassium and Chloride
Tri-sodium citrate is the triple basic anion of citric acid. So without protons it is basic.
Citrate chelates calcium, which is a necessary cofactor for several coagulation cascade enzymes.
The neutralization of citric acid and sodium hydroxide is an acid-base reaction. Citric acid, being an acid, reacts with sodium hydroxide, a base, to form water and a salt (sodium citrate), resulting in a neutral pH solution.