IR Spectrum (oud) 4000 100 40 3000 39 10 proton decoupled "C NMR Spectrum (200MHz CDC, solution) 75 200 9 H NMR Spectrum (400 MHz CDC, sous) 5.60 558 77 80 expansion ... 8 2000 V (cm) M 110/112114 ▬▬▬▬▬▬▬▬ 160 se m/e 120 160 200 240 DEPT OCH1 CH 1 mm 1600 7 com 120 1200 6 Mass Spectrum 800 5 C₂H₂Cl₂ 280 solvere 80 di 418 416 com 4 3 No significant UV absorption above 220 m L 40 expansion 111 2 08 (ppm) 1 TUS 4 0 8 (ppm) IR: List bands and possible/probable structural units responsible Band (cm¹) Possible stretches/functional groups MS: Molecular Formula 13C NMR: 1 2 3 4 5 6 ¹H NMR: 1 Chem. Shift (8) Type of C (sp, sp², carbonyl, etc.) 2 Chem. Shift (8) Multiplicity (singlet, doublet, etc.) IHD(DU) = 3 4 5 6 If you need more space, add any additional signal info here: (Show calculation) # of attached H's # of identical C's in signal Probable Type of H (methyl, aromatic, etc.) #of identical H's in signal
Analyzing Infrared Spectra
The electromagnetic radiation or frequency is classified into radio-waves, micro-waves, infrared, visible, ultraviolet, X-rays and gamma rays. The infrared spectra emission refers to the portion between the visible and the microwave areas of electromagnetic spectrum. This spectral area is usually divided into three parts, near infrared (14,290 – 4000 cm-1), mid infrared (4000 – 400 cm-1), and far infrared (700 – 200 cm-1), respectively. The number set is the number of the wave (cm-1).
IR Spectrum Of Cyclohexanone
It is the analysis of the structure of cyclohexaone using IR data interpretation.
IR Spectrum Of Anisole
Interpretation of anisole using IR spectrum obtained from IR analysis.
IR Spectroscopy
Infrared (IR) or vibrational spectroscopy is a method used for analyzing the particle's vibratory transformations. This is one of the very popular spectroscopic approaches employed by inorganic as well as organic laboratories because it is helpful in evaluating and distinguishing the frameworks of the molecules. The infra-red spectroscopy process or procedure is carried out using a tool called an infrared spectrometer to obtain an infrared spectral (or spectrophotometer).
![IR Spectrum
(liquid film)
لللللللللللا
4000
100
80
60
408
20
40
3000
39
10
proton decoupled
"C NMR Spectrum
(100 MHz, CDC, solution)
75
200
9
¹H NMR Spectrum
(400 MHz, CDCI, solution)
77
5.50 558
expansion
188-
▬▬▬▬▬▬
2000
T
8
M+
110/112/114
80 120 160 200 240
m/e
V (cm)
DEPT CH₂ CH₂ 1 CH 1
160
1600
5.42 5.40 ppm
mp
7
L
W
6
1200
120
Mass Spectrum
800
5
C3H4Cl2
280
solvent
T
I
80
1
4
3
No significant UV
absorption above 220 nm
40
expansion
4.18 4.16
pom
111
2
08 (ppm)
1
1
TMS
L
0
ō (ppm)
IR: List bands and possible/probable structural units responsible
Band (cm³)
Possible stretches/functional groups
MS:
Molecular Formula
13C NMR:
1
2
3
4
5
6
Chem. Shift (8) Type of C (sp, sp²,
carbonyl, etc.)
¹H NMR:
1
2
3
4
5
Chem. Shift (8) Multiplicity (singlet,
doublet, etc.)
IHD(DU)= (Show calculation)
6
If you need more space, add any additional signal info here:
# of attached H's
#of identical C's in
signal
Probable Type of H
(methyl, aromatic, etc.)
# of identical H's
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