Changium is a flower not a chemical element.
Element S has similar properties to element T but has a lower atomic number.
The atomic properties depends on the electrons of the outer shell. THe elements in differnent periods have the same arrangments of electrons in the outer shell. Thus, atomic prperties vary in a similar way in diffrent periods
The organizational tool used by scientists to order the elements by atomic number and similar properties is called the periodic table. It is a grid that arranges elements in rows and columns based on their atomic structure, allowing for easy comparison of elements with similar characteristics.
In general, atomic properties do not vary in a similar way in different periods. While the number of electron shells and energy levels increases as you move down a group, the number of protons and electrons also increases as you move across a period, impacting properties such as atomic size, electronegativity, and ionization energy. Therefore, atomic properties can vary significantly across periods due to changes in the number of protons and electrons.
Isotopes are atoms with the same number of protons (atomic number) but different numbers of neutrons, resulting in different atomic masses. These isotopes have similar chemical properties but may have different physical properties due to their different masses.
Element S has similar properties to element T but has a lower atomic number.
Both have two valence electrons had hence similar properties.
The atomic properties depends on the electrons of the outer shell. THe elements in differnent periods have the same arrangments of electrons in the outer shell. Thus, atomic prperties vary in a similar way in diffrent periods
periodic table
You think at fluorine (F).
The modern table is ordered by atomic mass and arranged to put elements with similar chemical properties together.
The organizational tool used by scientists to order the elements by atomic number and similar properties is called the periodic table. It is a grid that arranges elements in rows and columns based on their atomic structure, allowing for easy comparison of elements with similar characteristics.
Elements in the same group have similar chemical properties but not necessarily similar atomic numbers. Elements in the same group have the same number of valence electrons, which determines their reactivity and chemical properties.
In general, atomic properties do not vary in a similar way in different periods. While the number of electron shells and energy levels increases as you move down a group, the number of protons and electrons also increases as you move across a period, impacting properties such as atomic size, electronegativity, and ionization energy. Therefore, atomic properties can vary significantly across periods due to changes in the number of protons and electrons.
Bart would likely have properties more similar to Twee, as both are metals with similar atomic structures and properties. Grom, on the other hand, is a non-metal that would have different properties compared to Twee.
Isotopes are atoms with the same number of protons (atomic number) but different numbers of neutrons, resulting in different atomic masses. These isotopes have similar chemical properties but may have different physical properties due to their different masses.
The elements in the Periodic Table are arranged in order of increasing atomic number because it represents the number of protons in the atomic nucleus. It is the number of these protons, and their corresponding number of electrons, that determines the chemical properties of each element. It was found that when the elements lined up, the groups vertically had similar properties. They also increased by atomic mass. The table displays the patterns created by elements of similar properties.