During reflux, a solution may change color due to chemical reactions that occur at elevated temperatures. Increased heat can accelerate reactions, leading to the formation of new compounds or the breakdown of existing ones, which can alter the solution's color. Additionally, temperature changes can affect the solubility of colored species or the ionization of certain compounds, further contributing to the observed color change.
The universe as a whole does not have a specific colour. However, in a science experiment, when an antacid solution is added to a universal indicator, it may change colour based on the pH level of the solution. This change in colour signifies the acidity or alkalinity of the solution.
The color not change.
No colour
Methyl Orange is red in an acidic solution.
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The universe as a whole does not have a specific colour. However, in a science experiment, when an antacid solution is added to a universal indicator, it may change colour based on the pH level of the solution. This change in colour signifies the acidity or alkalinity of the solution.
Litmus does not change color in sugar solution.
starch will not change its own colour but it can change the colour of iodine solution. iodine solution is originally brown. after adding starch, it will turn into dark blue.
Benidicts Solution, Wont change colour
blue and purple
There will not be any colour change.
The color not change.
Benidicts Solution, Wont change colour
it will change into red colour
If we add salivary amylase to any solution ( eg:iodine solution) the colour of solution changes to blue.THE TIME TAKEN BY THE SALIVARY AMYLASE TO CHANGE ITS(iodine solution) COLOUR TO BLUE IS CALLED ACROMATIC POINT OF SALIVARY AMYLASE. ie, the time upto which the solution is colourless and after that it gains blue colour.
Phenolphthalein changes from colorless to pink when it reacts with an alkaline solution.
the benedict itself is not oxidized, it just turn other element's colour due to change during chemical reaction.....