| dot-get_dwv | d_wv: water vapour gradient (mol / m ^ 3) | 
| dot-get_Dx | D_x: Calculate diffusion coefficient for a given temperature... | 
| dot-get_gbw | g_bw: Boundary layer conductance to water vapour (m / s) | 
| dot-get_gh | g_h: boundary layer conductance to heat (m / s) | 
| dot-get_gr | Gr: Grashof number | 
| dot-get_gtw | g_tw: total conductance to water vapour (m/s) | 
| dot-get_H | H: sensible heat flux density (W / m^2) | 
| dot-get_hvap | h_vap: heat of vaporization (J / mol) | 
| dot-get_L | L: Latent heat flux density (W / m^2) | 
| dot-get_nu | Nu: Nusselt number | 
| dot-get_Pa | P_a: density of dry air (g / m^3) | 
| dot-get_ps | Saturation water vapour pressure (kPa) | 
| dot-get_Rabs | R_abs: total absorbed radiation (W / m^2) | 
| dot-get_re | Re: Reynolds number | 
| dot-get_sh | Sh: Sherwood number | 
| dot-get_Sr | S_r: longwave re-radiation (W / m^2) | 
| dot-get_Tv | Calculate virtual temperature | 
| E | Evaporation (mol / (m^2 s)) | 
| energy_balance | Calculate leaf energy balance | 
| hello | Hello, World! | 
| so17_eqn27 | so17_eqn27: Approximate leaf temperature using equation 27 of... | 
| tealeaves | 'tealeaves' package | 
| tleaves | 'tleaves': find leaf temperatures for multiple parameter sets | 
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