8 Given the diagram below, please explain using specific equations below how this process is relevant to the study of equilibrium. Why is this process an excellent example of the physiological relevance of pH and equilibrium concepts in chemistry in the biological sciences? Tissues CO₂ Chemistry in Action: Maintaining the pH of the Blood Capillary Erythrocyte O₂ + HHb HHbO₂ HbO; +H* CA * CO, + HO H,CO, → H*+ HCO, Plasma HCO Lungs CO₂ Erythrocyte Capillary O₂ + HHb HHbO₂HbO+H* CA CO, + H;0 * H,CO, * H* + HCO Plasma HCO

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mal
8
Given the diagram below, please explain using specific equations below how this process
is relevant to the study of equilibrium. Why is this process an excellent example of the
physiological relevance of pH and equilibrium concepts in chemistry in the biological
sciences?
Tissues
#3
0₂
CO₂
E
D
Chemistry in Action: Maintaining the pH of the Blood
Capillary
Erythrocyte
O₂ + HHb
HHbO, HbO; +H*
CA
* CO, +H;O > HCO, H*+ HCO,
$
4
stv
A
R
Plasma
F
e
Q
B
%
5
HCO;
I
Lungs
T
"A
0₂
G
CO₂
6
Erythrocyte
U
Capillary
-> 0, + ННЬ
↓
HHbO, HbO₂ +H*
CA
CO₂ + H₂O H₂CO, H+ HCO3
MacBook Pro
Y
Plasma
=>
&
7
H
U
HCO
* 00
8
J
BEZZE
(
с
K
Te
C
E
9
T
Transcribed Image Text:mal 8 Given the diagram below, please explain using specific equations below how this process is relevant to the study of equilibrium. Why is this process an excellent example of the physiological relevance of pH and equilibrium concepts in chemistry in the biological sciences? Tissues #3 0₂ CO₂ E D Chemistry in Action: Maintaining the pH of the Blood Capillary Erythrocyte O₂ + HHb HHbO, HbO; +H* CA * CO, +H;O > HCO, H*+ HCO, $ 4 stv A R Plasma F e Q B % 5 HCO; I Lungs T "A 0₂ G CO₂ 6 Erythrocyte U Capillary -> 0, + ННЬ ↓ HHbO, HbO₂ +H* CA CO₂ + H₂O H₂CO, H+ HCO3 MacBook Pro Y Plasma => & 7 H U HCO * 00 8 J BEZZE ( с K Te C E 9 T
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