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  1. Key words & phrases: C4H9Br CH3CH2CH2CH2Br image and diagram explaining the infrared spectrum of 1-bromobutane, complete infrared absorption spectrum of 1-bromobutane, comparative spectra of 1-bromobutane, prominent peaks/troughs for identifying functional groups in the infrared spectrum of 1-bromobutane, important wavenumber values in cm-1 for ...

    • Infrared Spectrum
    • References
    • Notes

    Go To: Top, References, Notes Data compilation copyrightby the U.S. Secretary of Commerce on behalf of the U.S.A.All rights reserved. Data compiled as indicated in comments: MSDC-IR - NIST Mass Spectrometry Data Center, William E. Wallace, director COBLENTZ- Coblentz Society, Inc.

    Go To: Top, Infrared Spectrum, Notes Data compilation copyrightby the U.S. Secretary of Commerce on behalf of the U.S.A.All rights reserved. No reference data available.

    Go To: Top, Infrared Spectrum, References 1. Data from NIST Standard Reference Database 69:NIST Chemistry WebBook 2. The National Institute of Standards and Technology (NIST)uses its best efforts to deliver a high quality copy of theDatabase and to verify that the data contained therein havebeen selected on the basis of sound scientific judgment.Ho...

  2. IR Spectrum; Mass spectrum (electron ionization) Data at other public NIST sites: Gas Phase Kinetics Database; Options: Switch to calorie-based units; Data at NIST subscription sites: NIST / TRC Web Thermo Tables, professional edition (thermophysical and thermochemical data)

  3. Other names: n-Butyl bromide; Butyl bromide; 1-Bromobutane; n-C4H9Br; UN 1126 Permanent link for this species. Use this link for bookmarking this species for future reference. Information on this page: Gas phase thermochemistry data; Condensed phase thermochemistry data; Phase change data; Reaction thermochemistry data; Gas phase ion energetics ...

  4. NIST/EPA/NIH Mass Spectral Library 2020 Author: NIST. NIST/EPA/NIH 2020 is a trusted source of mass spectral data and software tools. Wiley's NIST 2020 contains the complete NIST software suite as well as the various NIST libraries in NIST and native manufacturer formats to enable access to advanced search, analysis, and reporting methods found in the original and legacy manufacturer software ...

  5. IR Spectroscopy –Summary 15 12.1 –12.5 Infrared (IR) spectroscopy can be used to determine functional groups and bond strengths based upon molecular vibrations. Frequency of the IR absorptions is dependent upon the bond strengths and the masses of the atoms in the molecule. IR intensity is related to a change in dipole upon vibration.

  6. In general we w ill only be using the data i n an IR spectrum for stretching vibrations which have energies higher than 1620 cm-1. Although the bands at lower energy are known and assigned, the region below 1620 cm-1 is very congested with single bond stretches of two heavy atoms (see C-C and C-O i n table) and C-H bends and are beyond

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