6. Complete the following table: Clussfications M-renaetal Ianie moleclac, Citape metullic Substance S-1-g Substance composition (lonic, ..)elalic moderuler moliecular Inic Hg Kr H2S b.p. -60 °C K2S m.p. -39 °C b.p. -153 °C m.p. -86 °C m.p. 948 °C Physical state at -30 °C Physical state at -80 °C 1. Compare physical states at the same T to rank their intermolecular forces (IeFs) in strength: Stronger S1 ilg has the strongest IeFs- -has the weakest IeFs
6. Complete the following table: Clussfications M-renaetal Ianie moleclac, Citape metullic Substance S-1-g Substance composition (lonic, ..)elalic moderuler moliecular Inic Hg Kr H2S b.p. -60 °C K2S m.p. -39 °C b.p. -153 °C m.p. -86 °C m.p. 948 °C Physical state at -30 °C Physical state at -80 °C 1. Compare physical states at the same T to rank their intermolecular forces (IeFs) in strength: Stronger S1 ilg has the strongest IeFs- -has the weakest IeFs
Chemistry
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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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Shapes of orbitals are an approximate representation of boundaries in space for finding electrons occupied in that respective orbital. D orbitals are known to have a clover leaf shape or dumbbell inside where electrons can be found.
Question
I am wanting to make sure number 6 is correct.
![TTセー
3X
-1140 -286 k]/mol
-2570
2X
4X
AH° rxn =lo32 kJ
exo ? endo_thermic
ony
M-nenaetal
Ionie molkele ci Cotamic
6. Complete the following table:
Clussifications
metullic
chapler
S-1-9
Substance
Hg
Kr
H2S b.p. -60 °C
K2S
m.p. -39 °C b.p. -153 °C
m.p. -86 °C
m.p. 948 °C
Substance composition (ionic, ..)elalic molerular molrcular onic
Physical state at -30 °C
Physical state at -80 °C
Compare physical states at the same T to rank their intermolecular forces (IeFs) in strength:
うtonger 3,liり
has the strongest IeFs-
-has the weakest IeFs
7. In which state (x) does a gram of water loses more heat to cool down to +20 °C?
(g) at +140 °C or
(g) at +120 °C
(I) at +100 °C or
(g with I) at +100 °C
In which state does a gram of water gains more heat to warm up to +20 °C?
(1) at +5 °C or (1) at +6 °C
- (s) at -5 °C or (s) at -10 °C
Hint: locate the states in question as points on the heating-cooling curve of water. The
horizontal distance from these points to the final toc is the heat of each change.
Page 2 of 4](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F74a1bc88-e27b-45cc-b739-bed0ad3dcf13%2F5aff9213-ad3d-4c68-8cb6-9c1f30830d86%2Fr8k1dte_processed.jpeg&w=3840&q=75)
Transcribed Image Text:TTセー
3X
-1140 -286 k]/mol
-2570
2X
4X
AH° rxn =lo32 kJ
exo ? endo_thermic
ony
M-nenaetal
Ionie molkele ci Cotamic
6. Complete the following table:
Clussifications
metullic
chapler
S-1-9
Substance
Hg
Kr
H2S b.p. -60 °C
K2S
m.p. -39 °C b.p. -153 °C
m.p. -86 °C
m.p. 948 °C
Substance composition (ionic, ..)elalic molerular molrcular onic
Physical state at -30 °C
Physical state at -80 °C
Compare physical states at the same T to rank their intermolecular forces (IeFs) in strength:
うtonger 3,liり
has the strongest IeFs-
-has the weakest IeFs
7. In which state (x) does a gram of water loses more heat to cool down to +20 °C?
(g) at +140 °C or
(g) at +120 °C
(I) at +100 °C or
(g with I) at +100 °C
In which state does a gram of water gains more heat to warm up to +20 °C?
(1) at +5 °C or (1) at +6 °C
- (s) at -5 °C or (s) at -10 °C
Hint: locate the states in question as points on the heating-cooling curve of water. The
horizontal distance from these points to the final toc is the heat of each change.
Page 2 of 4
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