Does thickness of salt bridge affect voltage?

It would make sense that the more salt bridges you add, the less internal resistance would result, so the smaller the voltage drop and the larger the measured voltage from the cell.
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Does the type of salt bridge affect voltage?

Salt bridges are just a way to neutralize the ions but it is not used to move the electrons. Therefore, it has no effect in a Voltaic cell.
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How does salt affect voltage?

Because seawater is salty, containing 60 to 100 times more ions than freshwater, it increases the electrical potential, or voltage, between the two electrodes. That makes it possible to reap far more electricity than the amount used to charge the battery.
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Does length of salt bridge matter?

Analysis of variance shows that salt bridge length has significant effect both on mean (with 53.90% contribution at 95% CL) and variance (with 56.46% contribution at 87% CL), whereas the effect of cross sectional area of the salt bridge and the interaction of these two factors is significant on mean only (with 95% CL).
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Does salt bridge prevent voltage drop?

The main function of the salt bridge is to allow the movement of the ions from one solution to the other solution without mixing of the two solutions. Therefore the main function of the salt bridge are: 1. It prevents the voltage drop.
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KAC32.17 - Electrochemistry: The Role of the Salt Bridge



When salt bridge is removed the voltage?

No current will flow and the voltage will drop to zero if the salt bridge is removed.
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How does salt bridge reduce junction potential?

Salt bridge prevents the diffusion or mechanical flow of solution from one-half cell to another. It prevents or minimizes the liquid-liquid junction potential. (Potential arises between two solutions when they are in contact with each other). Salt bridge acts as an electrical contact between two half cells.
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How does salt bridge concentration affect voltage?

They were connected with a sodium nitrate salt bridge of varying concentrations. As the concentration doubled 5 times from 0.125M to 2M the voltage also increased.
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What factors affect the voltage of a galvanic cell?

Factors such as the metals constituting the electrodes play a large role in determining the voltage potential of a galvanic cell, however other variables such as concentration and temperature do affect the voltage produced.
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How does surface area of the salt bridge affect voltage in a galvanic cell?

As surface area increases so does the voltage for both cells. As concentration increases so does the voltage for all 3 types of cells. As temperature increases so does the voltage for all 3 types of cells.
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What factors affect voltage?

The voltage of a cell depends upon a number of factors, including what the electrodes are made from, and the substance used as the electrolyte . A simple cell can be made by connecting two different metals in contact with an electrolyte.
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Does salt increase voltage?

Adding an electrolyte (like salt) makes the solution more conductive. Greater solution conductivity improves the flow of electricity between the battery electrodes. As a result higher voltage is expected with more electrolyte in the solution.
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Does size of electrode affect voltage?

The electrodes in one group worked in the same condition. The only difference was the size of the electrode. Therefore, this result demon- strates that different electrode sizes generate different voltage levels. More specifically, larger electrodes increase the voltage.
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What increases cell voltage?

Solution : Cell voltage will increase, either by increasing the concentration of `Cu^(2+)` ion or by decreasing the concentration of `Ag^(+)`.
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What are the factors affecting electrode potential?

(2) The magnitude of electrode potential depends on the following factors, (i) Nature of the electrode, (ii) Concentration of the ions in solution, (iii) Temperature.
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In which of the following conditions salt bridge is not required in a galvanic cell?

If 2 electrodes are dipped in the same solution, then there is no need for a salt bridge to neutralize the charges because the ions can be easily moved through the porous barriers. We could see the use of salt bridges in galvanic cells such as the Daniel cell or Voltaic cell.
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What decreases the voltage of a cell?

Impure metals for the anode or cathode can cause a voltage change. Surface coating can cause a voltage drop. The acid or base concentration can cause a voltage change. The ionic strength of the solution can change the voltage.
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How do you increase cell potential in a galvanic cell?

To optimize the voltage in a Galvanic/Voltaic Cell, the concentration of the Reducing Agent in the Anodic Side of the system (oxidation rxn) should be low and the concentration of the Oxidizing Agent ion in the Cathodic side of the system (reduction rxn) should be high.
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What determines the voltage of a cell?

The voltage of a battery is a fundamental characteristic of a battery, which is determined by the chemical reactions in the battery, the concentrations of the battery components, and the polarization of the battery. The voltage calculated from equilibrium conditions is typically known as the nominal battery voltage.
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Does concentration affect voltage?

In an electrochemical cell, increasing the concentration of reactants will increase the voltage difference, as you have indicated. A higher concentration of reactant allows more reactions in the forward direction so it reacts faster, and the result is observed as a higher voltage.
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Does volume affect voltage?

The voltage of a cell is independent of the volume of the electrolytes involved and of the surface area of the electrode.
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How does concentration affect electrode potential?

Therefore an increase in concentration must cause the equilibrium to move to the left hand side making the electrode potential more positive. And a decrease in concentration must have the opposite effect i.e. make it more negative.
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How can junction potential be reduced?

The most common method of eliminating the liquid junction potential is to place a salt bridge consisting of a saturated solution of potassium chloride (KCl) and ammonium nitrate (NH4NO3) with lithium acetate (CH3COOLi) between the two solutions constituting the junction.
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What is the role of salt bridge in electrochemical cell?

A salt bridge or ion bridge, in electrochemistry, is a laboratory device used to connect the oxidation and reduction half-cells of a galvanic cell (voltaic cell), a type of electrochemical cell. It maintains electrical neutrality within the internal circuit.
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How does salt bridge maintain electrical neutrality?

The salt bridge then supplies negative ions to the oxidation half-cell in order to neutralise excess of Zn2+ ions. Similarly, it supplies positive ions to the reduction half-cell in order to neutralise the excess of sulphate ions. Thus, salt bridge maintains the electrical neutrality in both the half cells.
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