Hua-Min Huang

According to our database1, Hua-Min Huang authored at least 19 papers between 2003 and 2013.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of two.

Timeline

Legend:

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In proceedings 
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PhD thesis 
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Links

On csauthors.net:

Bibliography

2013
Cubic 1-fault-tolerant hamiltonian graphs, Globally 3*-connected graphs, and Super 3-spanning connected graphs.
Ars Comb., 2013

2012
Pancyclicity, Panconnectivity, and Panpositionability for General Graphs and Bipartite Graphs.
Ars Comb., 2012

2009
The super spanning connectivity and super spanning laceability of the enhanced hypercubes.
J. Supercomput., 2009

Mutually independent hamiltonian cycles for the pancake graphs and the star graphs.
Discret. Math., 2009

2008
On spanning connected graphs.
Discret. Math., 2008

Mutually Independent Hamiltonianicity of Pancake Graphs and Star Graphs.
Proceedings of the 9th International Symposium on Parallel Architectures, 2008

2007
Hamiltonian laceability of Faulty Hypercubes.
J. Interconnect. Networks, 2007

On the equitable <i>k</i> <sup>*</sup>-laceability of hypercubes.
J. Comb. Optim., 2007

On the spanning connectivity of graphs.
Discret. Math., 2007

2006
On the spanning <i>w</i>-wide diameter of the star graph.
Networks, 2006

Mutually Independent Hamiltonian Paths and Cycles in Hypercubes.
J. Interconnect. Networks, 2006

The Spanning Connectivity of the (n, k)-star Graphs.
Int. J. Found. Comput. Sci., 2006

Panpositionable Hamiltonian Graphs.
Ars Comb., 2006

2005
The super connectivity of the pancake graphs and the super laceability of the star graphs.
Theor. Comput. Sci., 2005

Mutually independent hamiltonian paths in star networks.
Networks, 2005

Mutually Independent Hamiltonian Cycles in Hypercubes.
Proceedings of the 8th International Symposium on Parallel Architectures, 2005

2004
The super laceability of the hypercubes.
Inf. Process. Lett., 2004

The Spanning Diameter of the Star Graphs.
Proceedings of the 7th International Symposium on Parallel Architectures, 2004

2003
Using transforming matrices to generate DNA clone grids.
Discret. Appl. Math., 2003


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