The melting points of Group 15 elements increase up to arsenic and then decrease down to bismuth
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Scientific literature and chemistry textbooks confirm that the melting points of Group 15 elements increase from nitrogen up to arsenic and then decrease down to bismuth.
EXAMINATION of a Lothar–Meyer plot with reference to the synthesis of elements up to 102, and the possibility of producing even higher elements, lead to some rather interesting speculations. On observation of the Lothar–Meyer plot of melting points (Fig. 1) several different types of characteristic periodic variations become apparent. Within Groups IA (lithium to caesium), IB (zinc to mercury), IIA (beryllium to barium), IIIA (boron to thallium), IVA (carbon to lead) and IVB (titanium to hafnium) the melting points tend to decrease with increasing atomic number. Within groups VB (vanadium to tantalum), VIA (oxygen to polonium), VIB (chromium to tungsten), VIIA (fluorine to astatine), VIIB (manganese to rhenium), VIIIA (helium to radon) and VIIIB (iron to osmium) the melting points tend to increase with increasing atomic number. Groups IIIB (scandium to lanthanum), VA (nitrogen to bismuth) and VIIIB (cobalt to iridium and nickel to platinum) exhibit an intermediate behaviour in which the melting points first increase and then decrease with increasing atomic number; and group IB (copper to gold) exhibits a slight minimum.
move down Group 5A(15), the melting points of the elements increase and then decrease. Explain. 14.92 … masses of Na and Rb (b) The melting point of Bry from the melting points of Cl, (—101.0°C) and I, (113 … fiber and then find the mass of cable. We convert the length of one fiber from km to m and then find its
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