49. All d-block elements are transition metals T'ransition metals and compounds function as catalyst because they contain available empty d-orbital's 50. Ethoxyethane has Butan-l-ol (1-butanol) molecules are held by hydrogen bonds which are stronger than van der wanl's f'orces of'attraction in ethoxyethane. a lower boiling point than butan-l -ol (I -butanol).

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Answer Q49 & 50

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Directions summarised
A
B
1,2,3
1,2
2,3
Only
All
Only
Only
correct
correct
correct
correct
Transcribed Image Text:Directions summarised A B 1,2,3 1,2 2,3 Only All Only Only correct correct correct correct
FIRST STATEMENT
SECOND
STATEMENT
47. Chlorination of
methyl benzene in UV
light proceeds via free
radical substitution
Methyl benzene is
oxidized to benzoic
acid by H'/K Mn0.(aq)
48 The hydrogen atom The hydrogen atom
slhows only one series
of spectral lines
contains only one
electron
49. All d-block
clements are transition
metals
Transition: metals and
compounds lunction as
catalyst because they
contain available empty
d-orbital's
50. Ethoxyethane has
a lower boiling point
than butan-l -ol
Butan-l-ol (i-butanol)
molecules are held by
hydrogen bonds which
are stronger than van der
wanl's forces ol attraction
in ethoxyethane.
(1 -butanol).
Transcribed Image Text:FIRST STATEMENT SECOND STATEMENT 47. Chlorination of methyl benzene in UV light proceeds via free radical substitution Methyl benzene is oxidized to benzoic acid by H'/K Mn0.(aq) 48 The hydrogen atom The hydrogen atom slhows only one series of spectral lines contains only one electron 49. All d-block clements are transition metals Transition: metals and compounds lunction as catalyst because they contain available empty d-orbital's 50. Ethoxyethane has a lower boiling point than butan-l -ol Butan-l-ol (i-butanol) molecules are held by hydrogen bonds which are stronger than van der wanl's forces ol attraction in ethoxyethane. (1 -butanol).
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