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1.
Figure 6.

Figure 6. From: A Low-Cost Real Color Picker Based on Arduino.

Colorimetric transformations.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
2.
Figure 4.

Figure 4. From: A Low-Cost Real Color Picker Based on Arduino.

Spectral responsivity of the four channels.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
3.
Figure 8.

Figure 8. From: A Low-Cost Real Color Picker Based on Arduino.

GUI of the software implemented in Matlab.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
4.
Figure 2.

Figure 2. From: A Low-Cost Real Color Picker Based on Arduino.

CIE LAB 1976 color space.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
5.
Figure 1.

Figure 1. From: A Low-Cost Real Color Picker Based on Arduino.

CIE 1931 chromaticity diagram.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
6.
Figure 3.

Figure 3. From: A Low-Cost Real Color Picker Based on Arduino.

Color picker prototype prototype (a) and portable version (b).

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
7.
Figure 7.

Figure 7. From: A Low-Cost Real Color Picker Based on Arduino.

Chromatic chart ColorChecker and chromatic values in CIE Lab space and sRGB.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.
8.

Figure 5. From: A Low-Cost Real Color Picker Based on Arduino.

Normalized digital count VS. Relative filtered radiation received for the four channels (a) Red; (b) Green; (c) Blue; (d) Clear.

Juan Enrique Agudo, et al. Sensors (Basel). 2014 Jul;14(7):11943-11956.

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