i don't know but i will try. by trying hard. what do you think?
Examples of scientific instruments include microscopes, spectrophotometers, telescopes, mass spectrometers, and DNA sequencers.
Walter Gilbert and Frederick Sanger independently develop methods to determine the exact sequence of DNA. Although the techniques used were different, they all came up with the same conclusion. However, most of today's DNA sequencers are of the ones developed by Sanger.
A microscope is commonly used to analyze evidence in forensics, such as hair, fibers, and blood samples. Other instruments, like spectrometers, chromatographs, and DNA sequencers, may also be used depending on the type of evidence being analyzed.
all electric furnaces use a sequencer
Geneticists use various tools such as microscopes, DNA sequencers, PCR machines, gel electrophoresis equipment, and bioinformatics software to study and analyze genetic information. These tools help geneticists understand patterns of inheritance, identify mutations, and unravel the genetic basis of diseases.
DNA was discovered in 1869 by Friedrich Miescher.
it will work in 2009. 2009
They will work on 2009.
To determine the heat anticipator setting on a room thermostat when using individual sequencers, first identify the total current draw of the heating elements controlled by the sequencers. Then, set the anticipator to match the total current in amps, which is usually indicated on the thermostat's scale. This ensures that the thermostat anticipates the temperature change appropriately and prevents temperature overshoot. Finally, make any necessary adjustments based on the system's responsiveness and user comfort.
Sequencers are preferred over contactors in ductwork applications primarily due to their ability to provide more precise control of multiple devices, such as fans and dampers, in HVAC systems. They can sequence the operation of these devices based on specific conditions, improving energy efficiency and system performance. Additionally, sequencers reduce the electrical load during startup, minimizing wear on equipment and enhancing reliability. Their programmability allows for greater flexibility in system management compared to the simpler on/off functionality of contactors.
Andrew Eisele has written: 'Power tools for Reason 6' -- subject(s): Software synthesizers, Software sequencers, Reason (Computer file), Software samplers 'The power of Reason 5' -- subject(s): Software synthesizers, Software sequencers, Reason (Computer file), Software samplers
Proteins are the enzymes, such as DNA polymerase, which actually to the work to replicate the DNA and help to maintain its integrity.