Conductance is reciprocal of resistance. Hence, G=1/R. Calculate now
yes, effectively a voltage controlled conductance. (conductance being the reciprocal of resistance)
reciprocal of resistance
Conductance is the inverse of resistance. The abbreviation is the mho, which is ohm spelled backward. The symbol is the upside down Omega symbol.
how calcualte conductivity
Specific conductance is the conductance of a specified length of a substance, typically 1 cm, while equivalence conductance is the conductance of all ions produced by one mole of an electrolyte in solution. Specific conductance is a property of the substance itself, whereas equivalence conductance is a property of the electrolyte in solution.
Specific conductance is directly proportional to the concentration of electrolyte, while equivalent conductance is inversely proportional to the concentration of electrolyte. This is because specific conductance is the conductivity of a solution normalized to a unit concentration, while equivalent conductance is the conductivity of a solution containing one equivalent of the electrolyte.
If conductance decreases, the current flowing through the circuit will also decrease. Conductance is the inverse of resistance, so decreasing conductance means increasing resistance, which impedes the flow of current.
No it will have high conductance
Corrected conductance is calculated to account for the impact of temperature on the conductance of a substance. Conductance is temperature-dependent, so correcting for this allows for a more accurate comparison of values across different temperatures. It helps to standardize conductance measurements and make them more reliable for analysis.
Conductance is ignored in short circuit studies because the inductance of the line is the dominant value. Conductance may not be ignored in stability studies.
The symbol G is used to represent conductance because it is the reciprocal of resistance. Conductance is a measure of how easily electric current can flow through a substance, whereas resistance is the measure of how much a substance inhibits the flow of current. Using G as the symbol for conductance helps to easily convey this relationship in electrical equations.
The conductance of a wire is the reciprocal of its resistance. Therefore, for a wire with a resistance of 400 ohms, the conductance would be 1/400 siemens, or 0.0025 siemens.
Conductance titration is a method used to determine the concentration of a solution by measuring its electrical conductance as a function of the amount of titrant added. As the titrant reacts with the analyte, the conductance of the solution changes, allowing for the endpoint of the reaction to be detected. Conductance titration is commonly used in analytical chemistry to determine the equivalence point in acid-base or redox reactions.
Conductance can increase after the end point in conductometric titrations due to the presence of excess titrant in the solution, leading to higher conductivity. This excess titrant can contribute to the conductance of the solution and cause an increase in measured conductance. Factors such as incomplete reaction or side reactions can also contribute to the increase in conductance post-end point.
When referring to electrical conductance, it is used in the application of electricity to equipment. Electrical conductance measures the equipment's ability to conduct electrical charge. A practical application would be to decrease the resistance in an electrical circuit so that the conductance is higher and electricity flows more smoothly.
The conductance of a wire can be calculated by taking the reciprocal of its resistance. In this case, the conductance would be 1/400 ohms^-1, or 0.0025 Siemens.