+ {

Sap # com a sbs.
Sequência a da primeira seguida com a sequência b da segunda série de sequências infinitésimas.
Logx/x [n] # lat + {
=log f /f[n] * [logΦ/Φ *[a, logΦ/Φ [n], 0]}.

+ x/√¯ [n]+ {
=log f /f[n] * [logΦ/Φ *[a, logΦ/Φ [n], 0]}. # long, x/ pi [n]+ {
=log f /f[n] * [logΦ/Φ *[a, logΦ/Φ [n], 0]}. # alt+ logx/x * p [n] + {
=log f /f[n] * [logΦ/Φ *[a, logΦ/Φ [n], 0]}.# long, Logy/y [n] # lat, j /√¯ [n] # long + w/ pi [n] # alt, logx/x * p [n] # long, Logx/x [n] # lat + x/√¯ [n] # long, x/ pi [n] # alt+ logx/x * p [n] # long, Logy/y [n] + e logx/x [n] # lat, j /√¯ [n] # long + w/ pi [n] # alt, logx/x * p [n] # long, Logx/x [n] # lat + x/√¯ [n] # long, x/ pi [n] # alt+ logx/x * p [n] # long, Logy/y [n] # lat, j /√¯ [n] # long + w/ pi [n] # alt, logx/x * p [n] # long , Logx/x [n]+e logx/x [n] # lat + x/√¯ [n] # long, x/ pi [n] # alt+ logx/x * p [n] # long, Logy/y [n] # lat, j /√¯ [n] # long + w/ pi [n] # alt, logx/x * p [n] # long [n....]



Lat = latitude,
Long = longitude.
Alt = altura.
e = expoente.
T = tempo.
Raiz quadrada =
Pi =
P = progressão.