because of the heat and the effect
The activity series in chemistry helps predict how elements will react with each other in redox reactions. Elements higher in the series are more reactive and will replace elements lower in the series in a reaction. By comparing the positions of elements in the activity series, one can predict which elements will undergo redox reactions and the direction of the reaction.
The reactivity series shows the relative reactivity of metals, with the most reactive metals at the top of the series and the least reactive metals at the bottom. It helps predict the outcome of displacement reactions and the ability of a metal to displace another metal from its salt solution.
Dmitri Mendeleev was able to predict the properties of germanium by leaving gaps in his periodic table for elements that were yet to be discovered. He noticed a pattern in the properties of known elements and used this pattern to predict the existence and properties of undiscovered elements, such as germanium.
You can predict if a metal will replace another in a compound based on the reactivity series of metals. A more reactive metal will displace a less reactive metal from its compound. The position of the metals in the reactivity series will determine whether a displacement reaction will occur.
One can predict a chemical reaction by understanding the properties of the reactants involved, such as their reactivity and bonding tendencies. Additionally, knowledge of the reaction conditions, such as temperature and pressure, can help predict the outcome of a chemical reaction.
Based on the other elements in the same group, like helium and neon, you can predict that it is a gas under normal conditions, and it is not chemically reactive.
its valence electrons, its number of energy levels, how reactive it is, and some properties it has
The activity series in chemistry helps predict how elements will react with each other in redox reactions. Elements higher in the series are more reactive and will replace elements lower in the series in a reaction. By comparing the positions of elements in the activity series, one can predict which elements will undergo redox reactions and the direction of the reaction.
the reactivity series lists elements in order from most reactive to least reactive. in a displacement reaction, a more reactive element will "displace" a less reactive element in a compound, the reactivity series can therefore be used to determine which displacement reactions are possible.
Single-replacement
The reactivity series shows the relative reactivity of metals, with the most reactive metals at the top of the series and the least reactive metals at the bottom. It helps predict the outcome of displacement reactions and the ability of a metal to displace another metal from its salt solution.
they have same numbers of electrons.
Dmitri Mendeleev was able to predict the properties of germanium by leaving gaps in his periodic table for elements that were yet to be discovered. He noticed a pattern in the properties of known elements and used this pattern to predict the existence and properties of undiscovered elements, such as germanium.
3
You can predict if a metal will replace another in a compound based on the reactivity series of metals. A more reactive metal will displace a less reactive metal from its compound. The position of the metals in the reactivity series will determine whether a displacement reaction will occur.
It can predict many things e.g. displacement reactions such as copper sulfate + Calcium → Calcium sulfate + Copper as the copper would've been displaced because calcium is more reactive, it also can predict how long it takes for a metal to corrode rust e.g. Gold is used for jewellery because it's shiny and beautiful and it has a very low reactivity. This means that many unreactive metals cost a lot. It can also predict many other things.
Dmitri Mendeleev