Revisiting The J 1 0 Fundamental Rotational Transition Of Hhe

Revisiting the J = 1 ← 0 fundamental rotational transition of HHe ...
Revisiting the J = 1 ← 0 fundamental rotational transition of HHe ...
Revisiting the J = 1 ← 0 fundamental rotational transition of HHe ...
Revisiting the J = 1 ← 0 fundamental rotational transition of HHe ...
J = 1 ← 0 rotational transition of N 2 H +. In the inset, the F 1 = 2 ← ...
J = 1 ← 0 rotational transition of N 2 H +. In the inset, the F 1 = 2 ← ...
Hyperfine structure (hfs) of the J = 1 0,1 ← 0 0,0 rotational ...
Hyperfine structure (hfs) of the J = 1 0,1 ← 0 0,0 rotational ...
THE J 1 0 ROTATIONAL TRANSITIONS OF 12
THE J 1 0 ROTATIONAL TRANSITIONS OF 12
J = 1 ¬ 1,1 0 0,0 rotational transition of HDO recorded at P = 0.23 ...
J = 1 ¬ 1,1 0 0,0 rotational transition of HDO recorded at P = 0.23 ...
Action spectrum of the H 2 D rotational transition 1 01 0 00 ...
Action spectrum of the H 2 D rotational transition 1 01 0 00 ...
Model used for the calculation. The J = 1 → J′ = 0 transition is ...
Model used for the calculation. The J = 1 → J′ = 0 transition is ...
Observed hyperfine resolved components of the J =→ 1 rotational ...
Observed hyperfine resolved components of the J =→ 1 rotational ...
Hyperfine components of the fundamental rotational transition of HD⁺ at ...
Hyperfine components of the fundamental rotational transition of HD⁺ at ...
2b. Spectrum of the J = 1→0 rotational transition of HCNH + , observed ...
2b. Spectrum of the J = 1→0 rotational transition of HCNH + , observed ...
Rotational transition J Ka,Kc = 14 3,11 −13 4,10 in the ground state of ...
Rotational transition J Ka,Kc = 14 3,11 −13 4,10 in the ground state of ...
Spectra of the J = 1 → 0 (black trace) and J = 2 → 1 (gray trace ...
Spectra of the J = 1 → 0 (black trace) and J = 2 → 1 (gray trace ...
J + 1 ← J rotational transition of HCO+ with J = 11 (left) and J = 15 ...
J + 1 ← J rotational transition of HCO+ with J = 11 (left) and J = 15 ...
J + 1 ← J rotational transition of HCO+ with J = 11 (left) and J = 15 ...
J + 1 ← J rotational transition of HCO+ with J = 11 (left) and J = 15 ...
Rotational transition J Ka,Kc = 14 3,11 −13 4,10 in the ground state of ...
Rotational transition J Ka,Kc = 14 3,11 −13 4,10 in the ground state of ...
(PDF) Frequency measurement of the J = 1-0 rotational transition of HD
(PDF) Frequency measurement of the J = 1-0 rotational transition of HD
Spectrum of the |J = 0 → |J = 1 rotational transitions of NaCs using a ...
Spectrum of the |J = 0 → |J = 1 rotational transitions of NaCs using a ...
Observed hyperfine resolved components of the J =→ 1 rotational ...
Observed hyperfine resolved components of the J =→ 1 rotational ...
Model used for the calculation. The J = 1 → J′ = 0 transition is ...
Model used for the calculation. The J = 1 → J′ = 0 transition is ...
Excitation temperature for the J = 1 → 0 and J = 2 → 1 rotational ...
Excitation temperature for the J = 1 → 0 and J = 2 → 1 rotational ...
2b. Spectrum of the J = 1→0 rotational transition of HCNH + , observed ...
2b. Spectrum of the J = 1→0 rotational transition of HCNH + , observed ...
Excitation temperature for the J = 1 → 0 and J = 2 → 1 rotational ...
Excitation temperature for the J = 1 → 0 and J = 2 → 1 rotational ...
Rotational transition J Ka,Kc = 14 3,11 −13 4,10 in the ground state of ...
Rotational transition J Ka,Kc = 14 3,11 −13 4,10 in the ground state of ...
Spectrum of a section of the J = 1-0 rotational transition of LiCCCN ...
Spectrum of a section of the J = 1-0 rotational transition of LiCCCN ...
Figure K.5: Energy level diagram of NH N = 1 → 0 rotational transition ...
Figure K.5: Energy level diagram of NH N = 1 → 0 rotational transition ...
Spectrum of the HeH⁺J = 1−0 ground-state rotational transition ...
Spectrum of the HeH⁺J = 1−0 ground-state rotational transition ...
| Measurements of the J K ′ ← J K ″ (K 0, 1, 2) rotational transitions ...
| Measurements of the J K ′ ← J K ″ (K 0, 1, 2) rotational transitions ...
5: CH + line fluxes of j → j − 1 rotational transitions as functions of ...
5: CH + line fluxes of j → j − 1 rotational transitions as functions of ...
Rotational ground state transition J = 1−0 of CF + with resolved ...
Rotational ground state transition J = 1−0 of CF + with resolved ...
Spectra of the J = 1 → 0, 2 → 1, and 3 →2 transitions of CO, the J = 1 ...
Spectra of the J = 1 → 0, 2 → 1, and 3 →2 transitions of CO, the J = 1 ...
Solved -.The J=0 to J=1 rotational transition of the CO | Chegg.com
Solved -.The J=0 to J=1 rotational transition of the CO | Chegg.com
i) A transition from J=0 to J=1 in the rotational spectrum of CO correspo..
i) A transition from J=0 to J=1 in the rotational spectrum of CO correspo..
Solved The J=0 to J=1 rotational transition of Carbon | Chegg.com
Solved The J=0 to J=1 rotational transition of Carbon | Chegg.com
Pure rotational transition (J Ka Kc ← J Ka Kc = 8 18 ← 7 17 ) of H 2 ...
Pure rotational transition (J Ka Kc ← J Ka Kc = 8 18 ← 7 17 ) of H 2 ...
Rotational ground state transition J = 1−0 of CF + with resolved ...
Rotational ground state transition J = 1−0 of CF + with resolved ...

Loading image details...

Source
Dimensions