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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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