We analyze an M theory fivebrane in order to study the moduli space of
vacua of N=1 supersymmetric Sp(N-c) gauge theories with N-f flavors i
n four dimensions. We show how the N=2 Higgs branch can be encoded in
M theory by studying the orientifold which plays a crucial role in our
work. When all the quark masses are the same, the surface of the M th
eory spacetime representing a nontrivial S-1 bundle over R-3 develops
A(Nf-1) type singularities at two points where D6 branes are located.
Furthermore, by turning off the masses, two singular points on the sur
face collide and produce an A(2Nf-1) type singularity. The sum of the
multiplicities of rational curves on the resolved surface gives the di
mension of an N=2 Higgs branch which agrees with the counting from the
brane configuration picture of type IIA string theory. By rotating M
theory fivebranes we get the strongly coupled dynamics of N=1 theory a
nd describe the vacuum expectation values of the meson field parametri
zing the Higgs branch which are in complete agreement with the field t
heory results. Finally, we take the limit where the mass of an adjoint
chiral multiplet goes to infinity and compare it with field theory re
sults. For the massive case, we comment on some relations with recent
work which deals with the N=1 duality in the context of M theory. [S05
56-2821(98)08018-7].