A typical steroid skeleton is shown along with the numbering scheme used for this class of compounds. Specify in each case whether the designated substituent is axial or equatorial. ÇH3 CH3 11 12 (a) Substituent at C-1 cis to the methyl groups (b) Substituent at C-4 cis to the methyl groups (c) Substituent at C-7 trans to the methyl groups (d) Substituent at C-11 trans to the methyl groups (e) Substituent at C-12 cis to the methyl groups

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specify in each case whether the substituent is axial or equatorial. 
a.) C-1 cis to methyl groups 

C. ) C-7 trans to methyl groups

A typical steroid skeleton is depicted with a numbering scheme used for this class of compounds. Please specify whether the designated substituent is axial or equatorial in each case.

(a) Substituent at C-1 cis to the methyl groups

(b) Substituent at C-4 cis to the methyl groups

(c) Substituent at C-7 trans to the methyl groups

(d) Substituent at C-11 trans to the methyl groups

(e) Substituent at C-12 cis to the methyl groups

### Diagram Explanation:

The image shows a steroid skeleton, which is a polycyclic structure common to steroid compounds. The structure has multiple rings and numbered carbon atoms. Methyl groups, denoted by "CH₃," are shown attached to certain carbon atoms. Additionally, hydrogen atoms ("H") are depicted at specific points. The diagram helps illustrate the spatial orientation of substituents relative to the methyl groups on the rings.
Transcribed Image Text:A typical steroid skeleton is depicted with a numbering scheme used for this class of compounds. Please specify whether the designated substituent is axial or equatorial in each case. (a) Substituent at C-1 cis to the methyl groups (b) Substituent at C-4 cis to the methyl groups (c) Substituent at C-7 trans to the methyl groups (d) Substituent at C-11 trans to the methyl groups (e) Substituent at C-12 cis to the methyl groups ### Diagram Explanation: The image shows a steroid skeleton, which is a polycyclic structure common to steroid compounds. The structure has multiple rings and numbered carbon atoms. Methyl groups, denoted by "CH₃," are shown attached to certain carbon atoms. Additionally, hydrogen atoms ("H") are depicted at specific points. The diagram helps illustrate the spatial orientation of substituents relative to the methyl groups on the rings.
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