$${\mathtt{Z}} = {\frac{{\mathtt{K}}{\mathtt{\,\times\,}}{\mathtt{t}}{\mathtt{\,\times\,}}{\mathtt{p}}}{\left({\mathtt{100}}{\mathtt{\,\times\,}}{\mathtt{360}}\right)}}$$ $${\mathtt{t}} = {\frac{{\mathtt{Z}}{\mathtt{\,\times\,}}{\mathtt{100}}{\mathtt{\,\times\,}}{\mathtt{360}}}{\left({\mathtt{K}}{\mathtt{\,\times\,}}{\mathtt{p}}\right)}}$$