1.1Free
Your guide: Miss SanaCounts atoms the way you count rupees: carefully.
Imagine a kiryana store with a hundred items and no shelves. Rice next to soap, sugar next to batteries. You could find anything eventually, but you could never predict where something is. Chemistry looked like that for a long time.
The question was: which label do you sort by? Scientists tried properties, then groups of three, then atomic mass. In 1871 Mendeleev's table was so good that it left gaps for elements nobody had found yet, and predicted their properties.
Step 1 / 7
Imagine a kiryana store with a hundred items and no shelves. Rice next to soap, sugar next to batteries. You could find anything eventually, but you could never predict where something is. Chemistry looked like that for a long time.
The question was: which label do you sort by? Scientists tried properties, then groups of three, then atomic mass. In 1871 Mendeleev's table was so good that it left gaps for elements nobody had found yet, and predicted their properties.
Modern Periodic Law: if the elements are arranged in ascending order of their atomic numbers, their chemical properties repeat in a periodic manner.
Q1. Check Newlands' “every eighth element” with lithium (Z = 3), sodium (Z = 11) and potassium (Z = 19). Does it still work for rubidium (Z = 37)?
It works for Li → Na → K, then breaks: from K to Rb the gap is 18, not 8.
Q2. Mendeleev's table put Be, Mg, Ca, Sr and Ba in one vertical group with Zn, Cd and Hg. How does the modern table fix this?
It divides the group into IIA (Be to Ba) and IIB (Zn, Cd, Hg).
Q3. Why did germanium make scientists trust Mendeleev's table?
His table predicted an unknown element's properties, and the prediction came true.
✗ Writing that Mendeleev arranged the elements by atomic number.
✓ Mendeleev used atomic mass. Atomic number came only after Moseley's discovery in 1911. This is a fill-in-the-blank in the exercise.
✗ Saying the noble gases were in Mendeleev's original table.
✓ They had not been discovered yet. Group VIIIA was added later, at the far right, as one of the improvements.
✗ Assuming the “every eighth element” rule works across the whole table.
✓ It fits the short periods (2 and 3, eight elements each). In periods 4 and 5 properties repeat after 18 elements, e.g. potassium 19 → rubidium 37.
1. Mendeleev arranged the elements in his periodic table according to their atomic:
(b) Atomic masses. Arranging by atomic number came after Moseley's work in 1911.
2. Dobereiner's groups of three similar elements were called:
(c) Triads, from 1829. Octaves were Newlands' idea in 1864.
3. How many elements did Newlands classify in 1864?
(c) The 62 elements known at that time, in increasing order of atomic mass.
4. True or false: in Mendeleev's periodic table, Be, Mg, Zn and Cd were placed in the same group.
(a) True. That was one of the confusions; the modern table splits them into IIA and IIB.
5. Which discovery led to the modern periodic law?
(c) Moseley's atomic number (1911). Sorting by it instead of atomic mass removed the old confusions.