In between these two, there are nickel, tin lead and hydrogen.
They all are more reactive than copper but less reactive than iron.
For your convenience, here is the reactive series of elements in order of decreasing reactivity:-
Start with a more reactive metal or element and a less reactive metal or element in solution or in contact with each other. The more reactive metal will displace the less reactive metal from its solution or compound, resulting in a new compound containing the more reactive metal and a separate less reactive metal. The displacement reaction follows the activity series of metals, where more reactive metals displace less reactive metals from their compounds.
Hydrogen (H) is more reactive. Francium (Fr) is less reactive.
No, magnesium is more reactive than lead. Magnesium is a Group 2 metal, which is more reactive than lead, a Group 14 metal. Magnesium reacts readily with oxygen to form a protective oxide layer, whereas lead is more resistant to reaction with air or water.
The reactivity of a metal influences its ability to displace another metal in a displacement reaction. A more reactive metal will displace a less reactive metal from its compound. For example, a more reactive metal like zinc can displace copper from copper sulfate because zinc is more reactive than copper.
This is known as a displacement reaction, where a more reactive metal can displace a less reactive metal from its compound or solution. This occurs because the more reactive metal has a greater tendency to lose electrons and form positive ions.
it displaces the less reative metal and replaces it.
When a more reactive metal displaces a less reactive metal in a solution what is the reaction calledRead more: When_a_more_reactive_metal_displaces_a_less_reactive_metal_in_a_solution_what_is_the_reaction_called
Start with a more reactive metal or element and a less reactive metal or element in solution or in contact with each other. The more reactive metal will displace the less reactive metal from its solution or compound, resulting in a new compound containing the more reactive metal and a separate less reactive metal. The displacement reaction follows the activity series of metals, where more reactive metals displace less reactive metals from their compounds.
titanium is far more reactive than lead, in fact titanium is a pretty reactive element but like aluminum it is protected by most forms of chemical corrosion because it forms a layer of titanium oxide over its surface that shields it from reacting easily.
they form a salt
Lithium is more reactive than lead. Lithium is a highly reactive metal and can react violently with water. Lead, on the other hand, is a relatively stable metal and does not react as readily with other substances.
Hydrogen (H) is more reactive. Francium (Fr) is less reactive.
The process is called a displacement reaction. In displacement reactions, a more reactive metal displaces a less reactive metal from a compound by reacting with the compound and forming a new metal compound. This occurs because more reactive metals have a greater tendency to lose electrons and form positive ions.
Zn is more reactive than Ga, Cd is more reactive than In; but Tl is more reactive than Hg.
There are two types of single-replacement reactions: metal displacement reactions and non-metal displacement reactions. In metal displacement reactions, a more reactive metal displaces a less reactive metal in a compound. In non-metal displacement reactions, a more reactive non-metal displaces a less reactive non-metal in a compound.
No, magnesium is more reactive than lead. Magnesium is a Group 2 metal, which is more reactive than lead, a Group 14 metal. Magnesium reacts readily with oxygen to form a protective oxide layer, whereas lead is more resistant to reaction with air or water.
less reactive.beacuse group-1 elements are the most reactive elements.