The element that does not react with hydrogen among the following has to be predicted. Concept introduction: The reaction of elements with hydrogen produces either ionic metal hydrides or molecular compounds. The reaction of hydrogen with metals produces ionic metal hydrides. The electronegativity of hydrogen is more than metals and hence, metals bears positive charge and hydrogen has negative charge. Thus, the oxidation number of hydrogen in ionic metal hydrides is − 1 . The reaction of non-metals with hydrogen produces molecular compounds. In general, non-metals are more electronegative than hydrogen and hence, hydrogen bears positive charge and non-metals are negatively charged in molecular compounds. Thus, the oxidation number of hydrogen in molecular compounds is + 1 . The oxidation number of metals in ionic hydrides and non-metals in molecular compounds are according to the group number and valence electron configuration of these elements. So, hydrogen react with both metals and non-metals to produce hydrides of corresponding elements. However, the elements belonging to noble gas family have very low chemical reactivity and therefore do not combine with hydrogen.
The element that does not react with hydrogen among the following has to be predicted. Concept introduction: The reaction of elements with hydrogen produces either ionic metal hydrides or molecular compounds. The reaction of hydrogen with metals produces ionic metal hydrides. The electronegativity of hydrogen is more than metals and hence, metals bears positive charge and hydrogen has negative charge. Thus, the oxidation number of hydrogen in ionic metal hydrides is − 1 . The reaction of non-metals with hydrogen produces molecular compounds. In general, non-metals are more electronegative than hydrogen and hence, hydrogen bears positive charge and non-metals are negatively charged in molecular compounds. Thus, the oxidation number of hydrogen in molecular compounds is + 1 . The oxidation number of metals in ionic hydrides and non-metals in molecular compounds are according to the group number and valence electron configuration of these elements. So, hydrogen react with both metals and non-metals to produce hydrides of corresponding elements. However, the elements belonging to noble gas family have very low chemical reactivity and therefore do not combine with hydrogen.
Solution Summary: The author explains that the element that does not react with hydrogen among the following has to be predicted.
The element that does not react with hydrogen among the following has to be predicted.
Concept introduction: The reaction of elements with hydrogen produces either ionic metal hydrides or molecular compounds. The reaction of hydrogen with metals produces ionic metal hydrides. The electronegativity of hydrogen is more than metals and hence, metals bears positive charge and hydrogen has negative charge. Thus, the oxidation number of hydrogen in ionic metal hydrides is −1. The reaction of non-metals with hydrogen produces molecular compounds. In general, non-metals are more electronegative than hydrogen and hence, hydrogen bears positive charge and non-metals are negatively charged in molecular compounds. Thus, the oxidation number of hydrogen in molecular compounds is +1.
The oxidation number of metals in ionic hydrides and non-metals in molecular compounds are according to the group number and valence electron configuration of these elements.
So, hydrogen react with both metals and non-metals to produce hydrides of corresponding elements. However, the elements belonging to noble gas family have very low chemical reactivity and therefore do not combine with hydrogen.
For the titration of a divalent metal ion (M2+) with EDTA, the stoichiometry of the reaction is typically:
1:1 (one mole of EDTA per mole of metal ion)
2:1 (two moles of EDTA per mole of metal ion)
1:2 (one mole of EDTA per two moles of metal ion)
None of the above
Please help me solve this reaction.
Indicate the products obtained by mixing 2,2-dimethylpropanal with acetaldehyde and sodium ethoxide in ethanol.
Chapter 21 Solutions
OWLv2 6-Months Printed Access Card for Kotz/Treichel/Townsend's Chemistry & Chemical Reactivity, 9th, 9th Edition