The electromotive series you are thinking of is called the metals. They are the ones that chooses the suitable electrode in setting up an electrochemical cell.
Yes, the Standard Calomel Electrode (SCE) can act as a cathode in certain electrochemical cells. When connected to a suitable anode in a galvanic cell or connected to a positive terminal in an electrolytic cell, the SCE can gain electrons and undergo reduction at its surface.
Carbon electrodes are commonly used in electrolytic cells due to their excellent electrical conductivity, chemical stability, and resistance to corrosion. They can withstand the harsh conditions of electrolysis without degrading, making them suitable for various electrolyte solutions. Additionally, carbon's ability to be easily shaped into different forms allows for versatile electrode designs, enhancing the efficiency of the electrochemical processes.
Dry cell graphite electrode when treated with permanganate can be used as a hydrogen ion sensor. where activated dry cell graphite electrode seem to be suitable as potentiometric indicator electrodes. :)
Actually alkaline batteries use a steel cup coated with carbon as the positive electrode. However the steel is purely structural to support the carbon coating and to prevent leakage of the electrolyte. It does not participate in generating the electricity.
Graphite has high electrical conductivity due to its delocalized electrons, making it suitable for use as electrodes. Its layered structure also allows for easy movement of electrons within the material, enhancing its performance as an electrode.
Yes, the Standard Calomel Electrode (SCE) can act as a cathode in certain electrochemical cells. When connected to a suitable anode in a galvanic cell or connected to a positive terminal in an electrolytic cell, the SCE can gain electrons and undergo reduction at its surface.
1) By maintaining appropriate gap between electrode and work. 2) By selection of suitable current value. 3) By choosing the right travel speed.
Carbon electrodes are commonly used in electrolytic cells due to their excellent electrical conductivity, chemical stability, and resistance to corrosion. They can withstand the harsh conditions of electrolysis without degrading, making them suitable for various electrolyte solutions. Additionally, carbon's ability to be easily shaped into different forms allows for versatile electrode designs, enhancing the efficiency of the electrochemical processes.
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Dry cell graphite electrode when treated with permanganate can be used as a hydrogen ion sensor. where activated dry cell graphite electrode seem to be suitable as potentiometric indicator electrodes. :)
Platinum electrode is used as the indicator electrode in potentiometry titration to measure the potential difference between the indicator electrode and the reference electrode. It provides a stable and reproducible potential during the titration process, allowing for accurate determination of the equivalence point. Platinum electrodes are inert and do not participate in the redox reactions happening during the titration, making them suitable for a wide range of titrations.
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No, the saturated calomel reference electrode is not suitable for use in strong alkaline solutions like 2-5 N KOH. The high pH environment can damage the electrode and affect its performance. It is better to use a reference electrode designed specifically for use in alkaline media, such as a silver/silver chloride electrode.
Platinum is considered the second best electrode material for the electrolysis of water, after iridium. Platinum is durable, has good electrical conductivity, and is resistant to corrosion, making it suitable for electrolysis applications.
Actually alkaline batteries use a steel cup coated with carbon as the positive electrode. However the steel is purely structural to support the carbon coating and to prevent leakage of the electrolyte. It does not participate in generating the electricity.
An electrode is an electric conductor, usually metals. A Cu electrode means copper electrode.In a voltaic Zn-Cu cell, or battery, (a spontaneous reaction, so the voltage is always positive) it consists of two electrodes in which each of them is immersed in their designated electrolytic solution. When the spontaneous reaction occurs, electrons get attracted to the cathode and make it negatively charged. Meanwhile, electrons get farther from the anode, making it positively charged.cathode=positiveanode=negativehow do you identify which is anode/cathode?Zn2+ + 2e- --> Zn(s) // V=-0.76Cu2+ + 2e- --> Cu(s) // V=+0.34A cathode is the electrode with which the reduction, or gaining of electrons, takes place. Whichever has the higher potential to gain electrons will serve as a cathode. The more positively charged an atom is, then the more it is likely to attract electrons.In this case, the cathode is the copper.Anode is the opposite of cathode.
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