Au(s) | Au+(aq) Al3+(aq) | Al(s)
(-_^)
The standard cell notation for a galvanic cell with aluminum and gold electrodes is represented as: Al(s) | Al³⁺(aq) || Au³⁺(aq) | Au(s). In this notation, the anode (aluminum) is listed on the left, and the cathode (gold) is on the right. The double vertical line (||) indicates the salt bridge or separation between the two half-cells. The state of each component (solid or aqueous) is also noted.
That is the standard notation.
That is the standard notation.
That is the standard notation.
That IS the standard notation.
Al(s) I AI3+(aq) II AI3+ (aq) I Al(s)
The standard cell notation for a galvanic cell with aluminum and gold electrodes is represented as: Al(s) | Al³⁺(aq) || Au³⁺(aq) | Au(s). In this notation, the anode (aluminum) is listed on the left, and the cathode (gold) is on the right. The double vertical line (||) indicates the salt bridge or separation between the two half-cells. The state of each component (solid or aqueous) is also noted.
-0.59 V
That is the standard notation.
That is the standard notation.
That is the standard notation.
That is the standard notation.
That IS the standard notation.
The EMF of a copper-aluminum voltaic cell can be determined by the standard reduction potential of each metal. Copper has a higher standard reduction potential than aluminum, so the cell will have a positive EMF. The exact value can be determined by calculating the difference between the reduction potentials of copper and aluminum.
standard notation is the answer the standard notation of 4*4 is 16 because its the answer
7.63 is the standard notation.
14.05 is the standard notation.