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two applications of Spectrophotometric analysis and briefly explain each
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- Give two applications of Spectrophotometric analysis and briefly explain eachWhich of the following is/are source/s of error in performing a spectrophotometric method? Answer all that apply. Sample is turbid when the absorbance is read. The absorbances were read at maximum absorption. Standard solutions are prepared accurately. The cuvettes have fingerprints.Why is it important to use standards or to develop a standard curve in spectrophotometry?
- The basic component of a fluoroscopic x-ray system suitable for interventional procedures consist of a generator,x-ray tube and housing including collimator and filtration,patient table,anti-scatter grid and an image receptor.Describe the key design features and function of each of these component and briefly discuss the role of automatic brightness controlProvide a list of the names of the devices and technologies used in Dynamic Light Scattering applied in Physical Methods in Biology and Medicine. Name of device or technology What is it used forThe basic components of a fluoroscopic x-ray system suitable for interventional procedures consists of a generator,x-ray tube and housing including collimator and filtration,patient table,anti-scatter grid and an image receptor.Describe the key design features and function each of these components and briefly discuss the role of automatic brightness control
- What is reflectance spectrophotometry What are it's general principles Reflectance spectrophotometry limitation of techniques How to use reflectance spectrophotometry in existing clinical applicationsExplain why it is not possible to directly measure RV by spirometry.Discuss if visual observations match with spectrophotometric analysis results.
- Provide a list of the names of the devices and technologies used in Dynamic Light Scattering applied in Physical Methods in Biology and Medicine.how to transform a magnification into a scale bar and vice versa.Explain the relationship between absorbance (A) and transmittance (T) for the basic spectrophotometer technique.