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How many DPV traces are plotted in the figure?
3
11
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) shows three distinct peaks?
green
12
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At approximately what potentials are the two main peaks of the blue (5.73) trace?
0.2 V and 0.35 V
13
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has the lowest starting current at -0.2 V (i.e., begins at the lowest baseline value)?
gree
16
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At approximately what potentials are the three peaks visible on the green (7.35) trace?
0.16 V, 0.27 V, 0.35 V
18
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has the highest current at the rightmost potential (~0.7 V)?
gree
19
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do the baselines for the blue (5.73) and orange (6.16) traces appear to overlap or are they clearly separate?
overlap
20
1
synthetic_dpvs
00000.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace shows the largest maximum peak current?
red
51
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace displays two distinct features (a main peak plus a shoulder) rather than a single symmetric peak?
blue
52
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has its main peak centered at the most negative potential (leftmost peak position)?
blue
53
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace exhibits a noticeable shoulder feature around -0.41 V?
blue
54
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do the peak heights increase monotonically with the legend values (32.00 → 35.43 → 62.74 → 141.93)?
yes
55
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has the smallest maximum peak current?
blue
57
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At 0.0 V (the most positive potential shown), which trace has the highest current?
green and red
58
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Around -0.5 V, rank the traces from highest peak current to lowest peak current.
red green orange blue
59
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace shows the broadest peak (widest peak shape) when comparing the main peaks?
red
60
2
synthetic_dpvs
00001.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How many distinct peaks does each trace display?
1
71
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace has the highest maximum current at the main peak?
green
72
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace has the smallest (shortest) peak current at the main peak?
blue
73
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Order the traces by the potential position of their main peak from left (lowest potential) to right (highest potential).
green blue orange
74
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace's peak is most right-shifted compared to the others?
orange
75
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At the highest plotted potential (around 0.85 V), which trace shows the largest current?
orange
76
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At approximately 0.0 V (left side of the plot), which trace has the lowest current?
blue
77
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Comparing the blue and orange traces, does the peak move to higher or lower potential when going from blue to orange?
higher
78
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has a peak height that is intermediate between the other two traces?
orange
79
3
synthetic_dpvs
00002.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How many DPV traces are shown in the plot?
3
131
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How many peaks does each DPV trace display?
1
132
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
According to the legend, what numerical value corresponds to the green trace?
129.78
133
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Is the orange trace's peak located to the left or to the right of the blue trace's peak?
right
135
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do the orange and green traces have peaks at the same center potential (yes or no)?
yes
136
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
When moving from the blue trace to the orange trace, does the peak height increase, decrease, or stay the same?
increase
137
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace shows the highest peak current?
green
138
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace shows the lowest peak current?
blu
139
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
From green to blue, does the peak shift to the left or to the right?
left
140
4
synthetic_dpvs
00003.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) shows the largest peak height near -0.19 V?
red
91
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
As the legend values increase from 25.86 to 99.17, how does the center position of the peak near 0.1 V change (move left, move right, or stay the same)?
stay the same (except for orange)
92
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) shows only two visible peaks because the higher-potential peaks appear combined into a single broad peak?
orange
93
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do the peak heights at about -0.19 V increase, decrease, or remain about the same as the legend value increases?
increase
94
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) has the lowest current at the leftmost potential shown (~ -0.4 V)?
green
95
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Between the green (83.19) and red (99.17) traces, which one has the peak near 0.1 V shifted further to the right (higher potential)?
red
96
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At approximately 0.25 V, order the four traces from lowest to highest peak current.
blue orange red green
97
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Does the peak at ~0.25 V shift horizontally with increasing legend value, or does it remain centered at the same potential?
stays the same
98
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How does the width of the peak near -0.19 V change as the legend value increases: broadens, narrows, or stays similar?
narrows
99
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Over the positive potential range (about 0.2 to 0.45 V), which trace (color and legend value) shows the highest overall current?
green
100
5
synthetic_dpvs
00004.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace (and its legend value) shows the largest peak current?
orange (very slightly, purple is very close) which is 8.00
141
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace (and its legend value) shows the smallest peak current?
blue which is 7.80
142
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
List the traces from least to greatest peak height by color and legend value.
blue (7.80), red (8.87), green (8.76), purple (8.98), orange (8.00)
143
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Are all peak centers located within the potential range 0 to -0.1 V?
y
144
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) breaks the overall leftward shift of peak centers with increasing legend value?
red
145
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which two colored traces have nearly overlapping peak centers?
green and purple
146
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Considering the traces from lowest to highest legend value (blue to purple), does the overall peak position move leftward, rightward, or show no clear trend?
leftward
147
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do any traces show a clear shoulder or secondary peak on the main peak?
no shoulders or secondary peaks
149
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace is colored purple and what legend value does it correspond to?
8.98
150
6
synthetic_dpvs
00005.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has its peak at the lowest potential (leftmost peak)?
green
1
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
In order from left to right (lowest to highest potential), what is the sequence of the colored peaks?
green orange blue
2
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace shows the largest peak current if you do not correct for baseline?
blue
3
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
After visually accounting for baseline (measuring peak height above local baseline), which trace has the tallest net peak?
green
4
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which two traces have nearly identical baselines in regions away from the peaks?
orange and green
5
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has an overall higher baseline and a less steep upward slope compared with the others?
blue
6
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At low potential (around 0.1 V), which trace has the highest current?
blue
7
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Between 0.6 V and 1.0 V, which trace exhibits the steepest increase in current?
green and orange
8
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do the orange and green traces overlap in their baseline regions away from the peak (yes or no)?
yes
9
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace's peak is closest to 0.50 V?
blue
10
7
synthetic_dpvs
00006.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace shows its left peak center shifted to about -0.20 V while the others are centered near -0.25 V?
green
61
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which four colored traces have their left peak centered at approximately -0.25 V?
blue orange purple red
62
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace has the largest left-hand peak height?
purple
63
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At the right-hand peak (around 0.22 V), which colored trace reaches the highest peak current?
red
64
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which two colored traces have approximately equal right-peak heights (appear roughly the same height at ~0.22 V)?
green and orange
65
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace shows a noticeably higher baseline on the right-hand side prior to the right peak?
red
66
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which peak (the left peak near -0.25 V or the right peak near 0.22 V) shows a clearer monotonic increase in peak height with the increasing legend values?
left
67
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Order the colored traces by right-peak height from lowest to highest (without baseline correction).
blue (orange and green) purple red
68
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace corresponds to the legend value 28.23?
blue
69
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which colored trace has the smallest peak heights on both the left and right peaks?
blue
70
8
synthetic_dpvs
00007.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How many distinct peaks are visible in each trace?
2
101
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (by legend value/color) has the largest left-side peak near -0.1 V?
red
102
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (by legend value/color) has the largest right-side peak around 0.1–0.2 V?
red
103
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace's right-side peak is shifted farthest to the right (highest potential)?
red
104
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (by legend value/color) shows the flattest baseline (least upward slope) across the plotted potential range?
gree
105
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace reaches the highest current at the most positive potential shown (around 0.6 V)?
orange
106
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At approximately 0 V, which trace shows the lowest current?
green
107
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Between the blue (42.83) and orange (45.21) traces, which one has its left peak at a slightly more positive potential?
blue
108
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace has the overall smallest peak heights for both left and right peaks?
blue
109
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace becomes the highest-current trace for potentials above about 0.3 V?
orange
110
9
synthetic_dpvs
00008.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) shows the largest peak current at the main peak?
green (5.67)
31
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace (color and legend value) shows the smallest peak current at the main peak?
blue (5.26)
32
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Approximately at what potential (V) are the three main peaks centered?
-0.34 V
33
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
As the legend value increases from 5.26 to 5.58 to 5.67, do the peak positions shift left, shift right, or stay the same?
left
34
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which two traces have visibly similar baselines (starting and ending at similar current values)?
orange and green
35
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At the most negative potential shown (left edge of the plot), which trace has the lowest current?
blue
36
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At the most positive potential shown (right edge of the plot), which trace has the highest current?
orange
37
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Do any of the traces show a clear shoulder or secondary peak near the main peak?
no
38
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Rank the three traces from highest to lowest current at the main peak (give color and legend value order).
blue (5.26), orange (5.58), green (5.67)
39
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace shows the least steep baseline slope in the region before the peak (left side baseline)?
blue
40
10
synthetic_dpvs
00009.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How many distinct peaks are visible in the blue trace labeled 26.43?
3
41
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
At approximately what potentials (in volts) are the centers of the blue trace's peaks?
0.28 V, 0.37 V, 0.42 V
42
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
How many main peaks does the orange trace labeled 54.25 display?
2
43
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Is the shoulder on the orange trace located on the lower-potential (left) side or higher-potential (right) side of its main peak?
left
44
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Does the green trace (92.03) display a prominent right-side shoulder on its main peak?
yes
45
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Which trace shows the smallest peak heights and which shows the largest peak heights (choose trace colors/labels)?
smallest is blue (26.42) and largest is red (144.66)
47
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
Are the main peaks of the orange and green traces centered at approximately the same potentials (around 0.35 V and 0.45 V)?
ye
48
11
synthetic_dpvs
00010.png
These are synthetically generated differential pulse voltammograms (DPVs) where values are in the legend. The values are stand-ins for some continuous value like concentration or pH.
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