Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a residually finite group in which all w-values are n-Engel, then the verbal subgroup w(G) is locally nilpotent. We also examine the question whether this is true in the case where G is locally graded rather than residually finite. We answer the question affirmatively in the case where m = 1. Moreover, we show that if u is a non-commutator word and G is a locally graded group in which all u-values are n-Engel, then the verbal subgroup u(G) is locally nilpotent
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, let υ be a multilinear commutator word and let w = υ^m . We prove tha...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, v a multilinear commutator word and w = vm. We prove that if G is a r...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...
Let m, n be positive integers, v a multilinear commutator word and w=v^m. Denote by v(G) and w(G) th...