Sulfuric acid dissociates more completely into ions in solution, yielding a higher concentration of charge carriers to conduct electricity compared to citric acid which dissociates less. Additionally, sulfuric acid is a strong acid with higher acidity and better conductivity compared to citric acid which is a weak acid with lower conductivity.
Sulfuric acid dissociates completely into ions in water, resulting in a higher concentration of ions available to conduct electricity. Citric acid only partially dissociates into ions in water, leading to a lower concentration of ions available for conducting electricity.
Solid citric acid does not conduct electricity because it lacks free-moving ions required to carry an electric current. When citric acid is dissolved in water to form a solution, it ionizes into citrate ions and hydrogen ions, creating charged particles capable of conducting electricity.
Solid citric acid does not conduct electricity because it lacks free-moving ions to carry the electric current. In contrast, when citric acid is dissolved in water, it dissociates into charged particles (ions) that can move freely in the solution, allowing it to conduct electricity.
The acid in tomatoes that allows them to conduct electricity is citric acid. Citric acid is naturally found in many fruits and vegetables, including tomatoes, and it helps create a conductive environment when in contact with an electrolyte solution like salt water.
Yes, lemons can conduct electricity due to the presence of citric acid and water which can act as an electrolyte. When two metal electrodes are inserted into the lemon, a small amount of electricity can flow between them.
Sulfuric acid dissociates completely into ions in water, resulting in a higher concentration of ions available to conduct electricity. Citric acid only partially dissociates into ions in water, leading to a lower concentration of ions available for conducting electricity.
Solid citric acid does not conduct electricity because it lacks free-moving ions required to carry an electric current. When citric acid is dissolved in water to form a solution, it ionizes into citrate ions and hydrogen ions, creating charged particles capable of conducting electricity.
It contains citric acid and other salts which are conductors of electricity in the presence of water which is there of course.
It contains citric acid and other salts which are conductors of electricity in the presence of water which is there of course.
Solid citric acid does not conduct electricity because it lacks free-moving ions to carry the electric current. In contrast, when citric acid is dissolved in water, it dissociates into charged particles (ions) that can move freely in the solution, allowing it to conduct electricity.
Limes are not conductive materials and do not conduct electricity. The high acidity in limes actually makes them a poor conductor of electricity.
The acid in tomatoes that allows them to conduct electricity is citric acid. Citric acid is naturally found in many fruits and vegetables, including tomatoes, and it helps create a conductive environment when in contact with an electrolyte solution like salt water.
Yes, lemons can conduct electricity due to the presence of citric acid and water which can act as an electrolyte. When two metal electrodes are inserted into the lemon, a small amount of electricity can flow between them.
No. It contains citric acid.
No, a lemon is a better conductor of electricity than a potato. This is because the citric acid and water content in a lemon make it a better electrolyte compared to a potato, allowing for the flow of electricity more efficiently.
Yes, all impure solutions of water containing salts are conductive to some degree, in addition many juices are acidic, and many acidic water solutions are conductive.
they contain water and water is a conductor YEAAnswerbecause of the certain elements inside them such as iron or potassium the asid in the fruit YEA lol