Examples of 'molecular devices' in a sentence
Meaning of "molecular devices"
Molecular devices refer to tools or equipment that are based on molecular-level principles and used in scientific research or technological applications
How to use "molecular devices" in a sentence
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Molecular Devices will contact you to discuss your specific needs.
The luminescence was measured on the SpectraMax plate reader from Molecular Devices.
The molecular Devices FlexStation.
Absorbance readings and data calculations are performed on a Molecular Devices plate reader.
Molecular Devices products are labeled and meet Proposition 65 requirements.
Fluorescence in each well was quantitated using a Molecular Devices microtiter plate reader.
Reaction product is determined quantitatively by fluorescent polarization using progressive IMAP beads from Molecular Devices.
The plate was then placed in a Molecular Devices Flexstation.
He also worked on photodynamic therapy, photosynthetic intermediates and supramolecular systems for molecular devices.
Our work often requires us to attach molecular devices to a metal ( usually gold ) surface.
Product formation in each well is quantified by measuring flourescense with a Molecular Devices Acquest.
The plates were read on a Molecular Devices Spectramax set to 450 nm.
The plate is put in a SpectraMax Plus plate reader Molecular Devices Corp.
Absorbance was measured using a Molecular Devices SPECTRAmax 250 microplate spectrophotometer.
The results of the assay are quantitated spectrophotometrically on a Molecular Devices Vmax plate reader.
See also
The plates were analyzed on a Molecular Devices spectrophotometric plate reader at 410 nm.
Certainly, another approach will be necessary to assemble molecular devices.
Equipment, Molecular Devices Model nu-max plate reader or equivalent.
See what it 's like to work at Molecular Devices.
Contact, tb@symbion.ki.ku.dk Molecular devices may lead to new forms of computing, says Alberto Credi.
A Spectramax Plus microtiter plate reader with monochrometer is obtained from Molecular Devices ( Sunnyvale, California ).
Using the Molecular Devices FLIPR instrument, 25 uL of diluted compound is added 30 seconds after start.
A Spectramax Plus microtiter plate reader with monochrometer was obtained from Molecular Devices ( Sunnyvale, California ).
Absorbance at 562nm was measured using the Molecular Devices VersaMax absorbance reader in a 96-well format.
Calcium flux following the addition of 15µM glutamate was monitored using a Molecular Devices FLIPR Tetra.
Signal in each well was then quantitated using a Molecular devices microtiter plate reader ( Thermo-Max ).
The assay was run in a 96-well microtiter plate using a SpectraMax 250 reader Molecular Devices.
Bacterial growth may be measured at 600nm using a Molecular Devices SpectraMax 340PC spectrophotometer.
These are exemplified by the SpectraMax ® 190 and the SpectraMax ® Gemini spectrometer from Molecular Devices.
The absorbance is measured at 450 nm e.g. on a Molecular Devices Thermomax plate reader.
The 96-well plate absorbance was read at the appropriate wavelength on a Molecular Devices M5.
Absorbance of the solubilised cells was read at 540nm using a Molecular Devices ThermoMax microplate reader.
Fluorescence was measured using an fmax fluorescence microplate reader from Molecular Devices ( Sunnyvale, CA ).
The activity was monitored continuously at 405 nm using a Molecular Devices VMax microtitre plate reader.
The assay is performed using a SpectraMax M5e microplate spectrophotometer from Molecular Devices ( Sunnyvale, CA ).
The absorbance of the dye solution was measured with a Molecular Devices SpechaMax340 plate reader.
The absorbance of each sample was determined at 590 nm using a Molecular Devices microplate reader.
The absorbance at 590 nm is determined for each sample using a Molecular Devices microplate reader.
The absorbance at 590 nm was determined for each sample using a Molecular Devices microplate reader.
Optical densities were read at 405 nm using a Molecular Devices microplate reader.
Product formation was monitored at 405 nm with a Molecular Devices UVmax plate reader.
Data are obtained by spectrophotometric analysis at 450 nm using a Molecular Devices Vmax plate reader.
Data was obtained by spectrophotometric analysis at 450 nm using a Molecular Devices Vmax plate reader.
Fluorescence is monitored for 20 minutes at 30 second intervals on a Molecular Devices Gemini fluorescence plate reader.
The absorbance of a 200 µl aliquot was measured at 690 nm with a Molecular Devices Thermomax Microplate Reader.
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