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Solution I for Plasmid Isolation by Alkaline Lysis Method

Preparation of Resuspension Buffer Containing Tris and EDTA for Isolation of Plasmid by Alkaline Lysis Method

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Reagents> 1M Tris.Cl (pH 8.0) solution, autoclaved> 0.5 EDTA (pH 8.0) solution, autoclaved> Deionized / Milli-Q water Equipment and disposables>…

Abies alba

Abies alba

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Molarity of 56.6% Ammonium Hydroxide

Molarity of 56.6% Ammonium Hydroxide (28% Aqueous Solution of Ammonia) [NH4OH (NH3 + H2O)]

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Concentration of Ammonium Hydroxide in % (wt/wt) : % (wt/wt) (Change the % (wt/wt) concentration) Density of Ammonium Hydroxide: g/ml…

Molarity of 70% Nitric Acid

Molarity of 70% (w/w) Nitric Acid (HNO3)

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Step 1: Calculate the volume of 100 grams of Nitric acid.Formula:Density =  weight / volume orVolume =  weight / density…

Molarity of 95% (w/w) formic acid (HCOOH)

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Concentration of Formic acid in % (wt/wt) : % (wt/wt) (Change the % (wt/wt) concentration) Density of glacial Formic acid:…

Molarity of 85% Phosphoric Acid

Molarity of 85% (w/w) Phosphoric acid (H3PO4)

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Molecular weight of Phosphoric acid (H3PO4): 98.00 g/mole Concentration of Phosphoric acid in % (wt/wt) : % (wt/wt) (Change the…

Molarity of 50% Sodium Hydroxide

Molarity of 50% (w/w) Sodium Hydroxide (NaOH)

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A 50% (w/w) concentrated Sodium hydroxide solution is a clear colorless liquid. It is an aqueous solution of Sodium hydroxide (NaOH). The 100 g of 50% Sodium hydroxide solution contains 50 g of NaOH. To calculate the molarity, one must first calculate how much Sodium hydroxide is present in 1 L of 50% Sodium hydroxide solution. Once we know the amount of Sodium hydroxide present in 1 L solution, we can calculate the molarity of the solution by dividing the NaOH amount by the molecular weight.