Photosynthesis - Carbon Dioxide Uptake
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San Jacinto Community College *
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Course
1308/1108
Subject
Chemistry
Date
Dec 6, 2023
Type
Pages
2
Uploaded by CoachBuffalo3632
12/2/23, 2:14 PM
Laboratory Simulation
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Student:
Madisen Tucker
Phases Complete
4 of 4 phases.
Phase Resets
Phase 1: 0
Phase 2: 0
Phase 3: 0
Phase 4: 0
Phase 5: 0
Popup Questions
Why is phenol red added to the test tubes?
Incorrect Attempts: 0
What is the initial color of the test tube?
Incorrect Attempts: -1
Acidic solutions will appear what color?
Incorrect Attempts: 0
My Prediction:
As photosynthesis progresses, the level of carbon dioxide will decrease.
My Strategy:
I will place a plant in an environment with carbon dioxide and light for photosynthesis to occur. I
will use a pH indicator to monitor the level of carbon dioxide. I will compare the results to a
negative control without a plant.
Analysis:
What is happening to the level of carbon dioxide in the experimental test tube with the
Elodea leaf as indicated by the red color in the tube?
The level of carbon dioxide is decreasing.
What is happening to the level of carbon dioxide in the negative control test tube
without the Elodea leaf as indicated by the yellow color in the tube?
12/2/23, 2:14 PM
Laboratory Simulation
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The level of carbon dioxide is unchanged.
Lab wrap up:
Why are carbon dioxide levels changing in the tube with Elodea?
Carbon dioxide levels are dropping because carbon dioxide is a reactant in photosynthesis.
Collected Lab Data
Elodea
Control
Time for color
change (min)
6
X
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A solution of FESCN2+ has a concentration of 1.00 x 10-M and an absorbance of 0.755. What is the concentration of
an FeSCN2+ solution with an absodbance of 0.491?
Enter your answer in scientific notation, with one decimal place, as follows: 2.3e-4 or 2.3E-4
Do not include units and note that 10 and x are NOT USED in this type of scientific notation.
Question 3 of 26>»
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Color BEFORE adding
Color AFTER adding
Intensity of color AFTER
adding FeCl3
Test Tube #
FeCl3
FeCl3
#1 (salicylic acid)
clear
lilac
100%
#2 (commercial aspirin A) clear
slightly pink
50%
#3 (commercial aspirin B) clear
lilac
95%
#4 (aspirin from your
clear
pink
20%
synthesis above)
#5 (control)
clear
clear
0%
Based on this data and the melting point of Aspirin, how pure is the synthesized product?
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8:38
X
& KE
● MEASUREMENT AND MATTER
Dosage calculations using patient weight
mL
ALEKS- Jessica Sceusa
www-awu.aleks.com
Explanation
Check
A 95.0 kg patient being treated for leukemia is to receive an IV infusion of 5 mg/kg cyclophosphamide. The pharmacy has prepared a 250.
mL IV bag of normal saline in which 1.00 g of cyclophosphamide has been dissolved. What is the total volume of the IV solution that should
be given to the patient? Round your answer to the nearest mL.
||||
x10
G69%
L
O
1/3
Jessica V
<
?
alo
© 2023 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility
Ar
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Please send the answers in proper significant figures
TITRIMETRIC DATA
SAMPLE: CANE VINEGAR
% acidity in label: 4.5%
%purity of KHP: 99.80%
FORMULA WEIGHT of KHP: 204.22 g/mol
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help
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CATION CONFIRMATORY TEST OBSERVATION
ADDED REAGENT(S)
OBSERVATIONS
Excess NH3
NVR
KSCN
NVR
K4Fe(CN)6
NVR
K3Fe(CN)6
NVR
Na2C2O4
NVR
NaOH (in evaporating dish)
Litmus paper: red to blue
ANION CONFIRMATORY TEST OBSERVATION
ADDED REAGENT(S)
OBSERVATIONS
HNO3, Fe(NO3)3
Blood red aqueous layer; colorless toluene layer
HNO3, KMnO4
Peach aqueous layer; colorless toluene layer
(to the ppt) CH3COOH
White ppt does not dissolve
MgCl2
NVR
6M H2SO4, FeSO4, 18M H2SO4
NVR
Select one or more:
NH4+
CO32-
Fe3+
SO42-
Cu2+
NO3-
Ca2+
I-
Br-
PO43-
Zn2+
SCN-
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Analysis of Percent Organic Matter of *
a soil sample was conducted and the
data are shown below. Calculate the
Percent Organic Matter of the
sample. (Write answer with 3
significant figures with no %unit)
Deionized water blank
Reagent blank
Sample with reagent
Absorbance
0.001
0.089
1.231
Standard Solution (%) Absorbance
10
20
40
80
100
0.291
0.489
0.889
1.692
2.075
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An oil sample had its iodine number determined using the pyridinium tribromide
method. The sample and reagents used are as follows:
Oil sample: 0.19 mL, density: 0.954 g/mL
Pyridinium tribromide: 0.472 g
Na2S203: 0.1 M, endpoint 27.68 mL
%3D
What is the approximate Bromine Number?
O 138
89
O 120
O 200
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1.
Data & Results
4.0 mglmL
Concentration of stock solution (include units):
Table 1-Beer's Law Plot Data
V Volume of standard
solution dispensed (mL)
M, Diluted concentration
(include units)
Sample
Absorbance
A
2.00 mL
0.084
4.00 mL
0.173
l6.00 mL
0.259
8.00 mL
0.340
E
10.00 mL
0.418
Equation of trendline from Beer's Law plot:
whats the diluted concentration and equation of
trendline from the beers law plot once created?
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#23 and 6
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Concentration of TZ stock solution (μMμM)
42.06
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Using C1V1=C2V2
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LabQuest 17
DATA TABLE
Trial
1
2
3
4
5
6
Concentration (mol/L)
0.080
0.16
0.24
0.32
0.40
Unknown number
Absorbance (no units)
0.2711
0.437
1.480
1.932
2.171
0.3
DATA ANALYSIS
1. Describe an alternate method for determining the molar concentration of your unknown
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Using the data collected in Table 1 fill in the blanks of Table 2
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A water sample was analyzed for Fe content using the iron-
phenanthroline method. The following data were obtained from the
analysis:
Reagent Blank Absorbance
Absorbance (au)
Reagent Blank Absorbance
0.003
Concentration of Stock Solution: 10 ppm
Volume of Stock
Solution (mL)
Total Volume of
Standard Solution
Concentration of
Standard Solution
(ppm)
Absorbance (au)
(mL)
0.50
10.00
0.012
1.00
10.00
0.132
2.00
10.00
0.267
3.00
10.00
0.349
4.00
10.00
0.428
5.00
10.00
0.560
Volume of
Unknown Solution
Total Volume of
Unknown Solution
Trial
Absorbance (au)
(mL)
(mL)
1
5.00
10.00
0.289
2
5.00
10.00
0.296
3
5.00
10.00
0.281
Determine the value of the slope (m), y-intercept (b), and the
coefficient of determination (r²)
A m = 0.1128; b = -4.0 x 10-5; r2 = 0.9880
B
m = 0.1128; b = -4.0 x 10-5; r² = 0.9762
C) m = 0.1128; b = -3.0 x 10-³; r² = 0.9880
D m = 0.1128; b = -3.0 x 10-³; r² = 0.9762
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Help me please
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All changes save
7. When two solutions are mixed, a color change occurs. The data tables show the time between mixing and the color change for two sets of conditions. For
Condition One, the solution concentrations were constant and temperature varied. For Condition Two, the temperature was constant and concentrations varied.
Condition One: Concentration
Time for
Temperature
(°C)
Sample
Color to
Change
1
10°
36 sec
22°
14 sec
Condition Two: Temperature
Time for
Concentration
Sample
Color to
%
Change
1.
100%
15 sec
2.
50%
24 sec
Which of these statements is true according to the data?
O The reaction rate is greater at 22°C than at 10°C.
O Reducing the temperature increases the rate of the reaction.
The reaction is affected by changes in temperature
not by changes in concentration.
O Decreasing the concentration increases the reaction rate.
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Write a short outline or a flow diagram of the procedure
List and safety issues
Read and understand the MSDS information for each chemical used in this practical
Experimental procedure
Please do not scratch the clear sides of the UV cuvettes as this will invalidate your results.
Part 1: Preparation of a calibration curve
A calibration curve should be constructed using at least five concentrations of the pure paracetamol standard
supplied in the range 3-15 ug/mL as follows:
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NaOH and dilute to about 100 mL with deionised water (DI). Shake and make up to volume with DI water. Dilute
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- 20,18,2,4,15,15,10 Using these data, construct a 80% confidence interval for the average net change in a student's score after completing the course. Assume the population is approximately normal. Construct the 80% confidence interval. Round your answer to one decimal place.arrow_forwardA solution of FESCN2+ has a concentration of 1.00 x 10-M and an absorbance of 0.755. What is the concentration of an FeSCN2+ solution with an absodbance of 0.491? Enter your answer in scientific notation, with one decimal place, as follows: 2.3e-4 or 2.3E-4 Do not include units and note that 10 and x are NOT USED in this type of scientific notation. Question 3 of 26>»arrow_forwardColor BEFORE adding Color AFTER adding Intensity of color AFTER adding FeCl3 Test Tube # FeCl3 FeCl3 #1 (salicylic acid) clear lilac 100% #2 (commercial aspirin A) clear slightly pink 50% #3 (commercial aspirin B) clear lilac 95% #4 (aspirin from your clear pink 20% synthesis above) #5 (control) clear clear 0% Based on this data and the melting point of Aspirin, how pure is the synthesized product?arrow_forward
- 8:38 X & KE ● MEASUREMENT AND MATTER Dosage calculations using patient weight mL ALEKS- Jessica Sceusa www-awu.aleks.com Explanation Check A 95.0 kg patient being treated for leukemia is to receive an IV infusion of 5 mg/kg cyclophosphamide. The pharmacy has prepared a 250. mL IV bag of normal saline in which 1.00 g of cyclophosphamide has been dissolved. What is the total volume of the IV solution that should be given to the patient? Round your answer to the nearest mL. |||| x10 G69% L O 1/3 Jessica V < ? alo © 2023 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility Ararrow_forwardPlease send the answers in proper significant figures TITRIMETRIC DATA SAMPLE: CANE VINEGAR % acidity in label: 4.5% %purity of KHP: 99.80% FORMULA WEIGHT of KHP: 204.22 g/molarrow_forwardhelparrow_forward
- CATION CONFIRMATORY TEST OBSERVATION ADDED REAGENT(S) OBSERVATIONS Excess NH3 NVR KSCN NVR K4Fe(CN)6 NVR K3Fe(CN)6 NVR Na2C2O4 NVR NaOH (in evaporating dish) Litmus paper: red to blue ANION CONFIRMATORY TEST OBSERVATION ADDED REAGENT(S) OBSERVATIONS HNO3, Fe(NO3)3 Blood red aqueous layer; colorless toluene layer HNO3, KMnO4 Peach aqueous layer; colorless toluene layer (to the ppt) CH3COOH White ppt does not dissolve MgCl2 NVR 6M H2SO4, FeSO4, 18M H2SO4 NVR Select one or more: NH4+ CO32- Fe3+ SO42- Cu2+ NO3- Ca2+ I- Br- PO43- Zn2+ SCN-arrow_forwardAnalysis of Percent Organic Matter of * a soil sample was conducted and the data are shown below. Calculate the Percent Organic Matter of the sample. (Write answer with 3 significant figures with no %unit) Deionized water blank Reagent blank Sample with reagent Absorbance 0.001 0.089 1.231 Standard Solution (%) Absorbance 10 20 40 80 100 0.291 0.489 0.889 1.692 2.075arrow_forwardFrom the data in Table 2.5, compute the concentration of the undiluted and diluted ovalbumin samples (make sure to account for the appropriate dilution factors, DF, in the computation).arrow_forward
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