Step 1: Analyzing the ligands.
In ligand field theory, ligands can be classified as strong field or weak field ligands. Strong field ligands cause larger splitting in the d-orbitals, while weak field ligands cause smaller splitting.
- Cyanide (CN\(^-\)) is a strong field ligand, meaning it will cause a large crystal field splitting and therefore a high \(\Delta_o\).
- Water (H\(_2\)O) is a weak field ligand, and as a result, the crystal field splitting will be smaller.
- Fluoride (F\(^-\)) is also a weak field ligand, but slightly stronger than water, so the crystal field splitting will be between cyanide and water.
Step 2: Determining the order of \(\Delta_o\).
- Since cyanide (CN\(^-\)) is a strong field ligand, the complex \([Cr(CN)_6]^{3-}\) will have the highest \(\Delta_o\).
- Water (H\(_2\)O) is weaker than cyanide, so \([Cr(H_2O)_6]^{3+}\) will have a smaller \(\Delta_o\).
- Fluoride (F\(^-\)) is weaker than both cyanide and water, so \([CrF_6]^{3-}\) will have the lowest \(\Delta_o\).
Thus, the correct order of \(\Delta_o\) is:
\[
\text{[Cr(CN)\(_6\)]}^3- > \text{[Cr(H\(_2\)O)\(_6\)]}^3+ > \text{[CrF\(_6\)]}^3-.
\]
The correct answer is (C).
The Lineweaver-Burk plot for an enzyme obeying the Michaelis-Menten mechanism is given below. 
The slope of the line is \(0.36 \times 10^2\) s, and the y-intercept is \(1.20\) mol\(^{-1}\) L s. The value of the Michaelis constant (\(K_M\)) is ________ \( \times 10^{-3} \) mol L\(^{-1}\) (in integer). [Note: \(v\) is the initial rate, and \([S]_0\) is the substrate concentration]
The expressions for the vapour pressure of solid (\( p_1 \)) and vapour pressure of liquid (\( p_2 \)) phases of a pure substance, respectively, are \[ \ln p_1 = \frac{-2000}{T} + 5 \quad {and} \quad \ln p_2 = \frac{-4000}{T} + 10 \] The triple point temperature of this substance is __________ K (in integer).
The ratio of the fundamental vibrational frequencies \( \left( \nu_{^{13}C^{16}O} / \nu_{^{12}C^{16}O} \right) \) of two diatomic molecules \( ^{13}C^{16}O \) and \( ^{12}C^{16}O \), considering their force constants to be the same, is ___________ (rounded off to two decimal places).
The specific rotation of enantiomerically pure (S)-2-butanol is \( +14^\circ \). The specific rotation of the enantiomeric mixture of 2-butanol obtained from an asymmetric reduction of 2-butanone is found to be \( +7^\circ \). The percentage of (R)-2-butanol present in the reaction mixture is ____________ (in integer).}
Partial hydrolysis of a pentapeptide yields all possible tripeptides and dipeptides. The dipeptides that are obtained upon hydrolysis are given below: Val-Ala Gln-His Phe-Val Ala-Gln
The total number of tripeptides obtained that contain ‘Ala’ as one of the amino acids is __________