Some results on the properties and solutions of the steady-state form of the neoclassical transport equations are presented for regimes of interest to feasibility experiments and reactors. An analytical solution is obtained for the special case dT/dr = 0. For dT/dr ≠0, an analytic solution is found for the particle density n(r) in terms of the current j(r) and the temperature T(r). For a prescribed j(r), a single differential equation remains to find the temperature profile. The numerical results suggest that neoclassical scaling does not admit self-sustained fusion plasma operation (n ∼ 1014/cm3, T ∼ 10 keV) except in plasmas of uninterestingly small sizes (Ip <500 kA).