Using 1h nmr spectroscopy, the difference between an aldehyde and a ketone is predicted as an aldehyde contains two C-H stretches ranging between 2700-2850 cm⁻¹.
What is spectroscopy?
Spectroscopy is the study of how light as well as other radiation are absorbed and emitted by materials, and how this depends just on wavelength of that radiation.
Some characteristics of spectroscopy are-
- The study of interactions between particles like electrons, protons, and ions as well as their interactions with some other elements as a result of their collision energy has been added to the term more recently.
- The most fundamental physics theories, such as quantum theory, both special and general theories of relativity, including quantum electrodynamics, have all benefited greatly by spectroscopic analysis.
- Scientific comprehension of the electromagnetic force together with the strong and weak nuclear forces has been greatly aided by the use of spectroscopy in high-energy collisions.
- Magnetic resonance imaging (MRI), a medical procedure, uses radio-frequency spectroscopy on nuclei in a magnetic field to produce images of the inside soft tissues of the body with unparalleled resolution.
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