| 2009 |
| 10 | EE | Ron Shaw,
Neil A. Gordon:
The cubic Segre variety in PG(5, 2).
Des. Codes Cryptography 51(2): 141-156 (2009) |
| 2007 |
| 9 | EE | Ron Shaw:
The psi-associate X# of a flat X in PG(n , 2).
Des. Codes Cryptography 45(2): 229-246 (2007) |
| 2006 |
| 8 | EE | Ron Shaw,
Neil A. Gordon:
The Polynomial Degree of the GrassmannianG1, n, 2.
Des. Codes Cryptography 39(2): 289-306 (2006) |
| 2005 |
| 7 | EE | Ron Shaw,
Johannes G. Maks,
Neil A. Gordon:
The Classification of Flats in PG(9, 2) which are External to the Grassmannian G1, 4, 2.
Des. Codes Cryptography 34(2-3): 203-227 (2005) |
| 6 | EE | Ron Shaw,
Neil A. Gordon,
Johannes G. Maks:
Partial spreads in PG(4, 2) and flats in PG(9, 2) external to the Grassmannian G1, 4, 2.
Discrete Mathematics 301(1): 137-146 (2005) |
| 2004 |
| 5 | EE | Ron Shaw,
Neil A. Gordon:
The Quintic Grassmannian G{1, 4, 2} in PG(9, 2).
Des. Codes Cryptography 32(1-3): 381-396 (2004) |
| 1999 |
| 4 | EE | Ron Shaw:
A property of A7, and a maximal 3-dimensional linear section of GL(4, 2).
Discrete Mathematics 197-198: 733-747 (1999) |
| 3 | EE | Ron Shaw:
Configurations of planes in PG(5, 2).
Discrete Mathematics 208-209: 529-546 (1999) |
| 1997 |
| 2 | EE | Ron Shaw:
Icosahedral Sets in PG(5, 2).
Eur. J. Comb. 18(3): 315-339 (1997) |
| 1994 |
| 1 | | Ron Shaw,
Neil A. Gordon:
The Lines of PG(4, 2) Are the Points on a Quintic in PG(9, 2).
J. Comb. Theory, Ser. A 68(1): 226-231 (1994) |