lotus‐type porous copper
Development of Lotus Type Porous Copper Heat Sink
8
Effect of Pore Morphology on Compressive Yield Strength of Lotus Type Porous Copper with Various Specimen Sizes
5
Size Effects on Tensile Strength of Lotus Type Porous Copper
5
Fatigue Crack Initiation and Propagation in Lotus Type Porous Copper
7
Numerical Simulation of Laser Fusion Zone Profile of Lotus Type Porous Metals
6
Laser Welding of Lotus Type Porous Iron
5
Tribological Behaviour of Lotus Type Porous Cast Iron
5
Fabrication of Lotus Type Porous Aluminum Utilizing Decomposition of Moisture
5
Fabrication, Mechanical and Physical Properties, and Its Application of Lotus Type Porous Metals
9
Effect of Hydrogen Pressure on Moisture Based Fabrication of Lotus Type Porous Nickel
5
Fabrication of Lotus type Porous Stainless Steel by Unidirectional Solidification under Hydrogen Atmosphere
7
Fabrication of Lotus Type Silver with Directional Pores by Unidirectional Solidification in Oxygen Atmosphere
6
Fabrication of Lotus Type Porous Brass by Zinc Diffusion into Porous Copper
5
Effect of Electrodeposition Parameters on the Morphology of Three-Dimensional Porous Copper Foams
10
Lotus japonicus Symbiosis Genes Impact Microbial Interactions between Symbionts and Multikingdom Commensal Communities
15
Pimprikar, Priya Sunil (2018): Transcriptional regulation of RAM1, a central regulator of arbuscule branching in arbuscular mycorrhiza symbiosis. Dissertation, LMU München: Fakultät für Biologie
198
High Strain Rate Compaction of Porous Materials – Experiments and Modelling
6
c Type Cytochrome Assembly Is a Key Target of Copper Toxicity within the Bacterial Periplasm
10
SUNERGOS1, a Lotus japonicus gene required for proper accommodation of rhizobial infection
111
Unusual Wetting of Liquid Bismuth on a Surface Porous Copper Substrate Fabricated by Oxidation Reduction Process
6