Correlated Color Temperature

Correlated Color Temperature (CCT) describes the visual color of a light source by comparing its chromaticity with that of an ideal blackbody radiator, and it helps engineers specify and evaluate lighting systems. Expressed in kelvins, CCT indicates whether light appears warm, with yellow or reddish tones at lower values, or cool, with bluish tones at higher values; it does not measure the source’s actual operating temperature. Engineers use CCT with color rendering, illuminance, and spectral measurements to select LEDs, lamps, and displays for applications such as architectural lighting, imaging, manufacturing, and human-centered environments.

Correlated Color Temperature - Related Videos

Research

JoVE Journal - Biochemistry

Using Three-color Single-molecule FRET to Study the Correlation of Protein Interactions

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Cited by 12 •

2018

Here, we present a protocol to obtain three-color smFRET data and its analysis with a 3D ensemble Hidden Markov Model. With this approach, scientists can extract kinetic information from complex protein systems, including cooperativity or correlated interactions.

Education

JoVE Core - Social Psychology

Correlations

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2020

Correlation means that there is a relationship between two or more variables (such as ice cream consumption and crime), but this relationship does not necessarily imply cause and effect. When two variables are correlated, it simply means that as one variable changes, so does the other. We can measure correlation by calculating a statistic known as a correlation coefficient. A correlation coefficient is a number from -1 to +1 that indicates the strength and direction of the relationship between...

Dual-color Correlative Light and Electron Microscopy for the Visualization of Interactions between Mitochondria and Lysosomes

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Cited by 4 •

2024

This protocol describes a mechanism for using correlative light and electron microscopy to visualize the interaction of mitochondria and lysosomes labeled with mEosEM and APEX2, respectively.

Color Afterimages

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2023

Source: Laboratory of Jonathan Flombaum—Johns Hopkins University Human color vision is impressive. People with normal color vision can tell apart millions of individual hues. Most amazingly, this ability is achieved with fairly simple hardware. Part of the power of human color vision comes from a clever bit of engineering in the human brain. There, color perception relies on what is known as an 'opponent system.' This means that the presence of one kind of stimulus is treated as evidence for...

Correlative Light- and Electron Microscopy Using Quantum Dot Nanoparticles

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Cited by 12 •

2016

A method is described whereby quantum dot (QD) nanoparticles can be used for correlative immunocytochemical studies of epoxy embedded human pathology tissue. We employ commercial antibody fragment conjugated QDs that are visualized by widefield fluorescence light microscopy and transmission electron microscopy.

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