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How can CNT-NCs kill microbes?
Appreciating the role of carbon nanotube composites in preventing biofouling and promoting biofilms on material surfaces in environmental engineering: a review.
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How can CNT-NCs be made less toxic?
Appreciating the role of carbon nanotube composites in preventing biofouling and promoting biofilms on material surfaces in environmental engineering: a review.
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What are the challenges of using CNT-NCs?
Appreciating the role of carbon nanotube composites in preventing biofouling and promoting biofilms on material surfaces in environmental engineering: a review.
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What are the challenges of controlling AD?
WHAT SHOULD BE DONE IN THE CONTROL OF DEGENERATIVE DISEASES?
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What types of control technologies can be used in AD?
Molecular imaging: what can be used today.
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What are the pros and cons of centralized AD plants for control?
A group M consensus envelope glycoprotein induces antibodies that neutralize subsets of subtype B and C HIV-1 primary viruses.
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How does graphene prevent microbial corrosion?
Suppressing bacterial interaction with copper surfaces through graphene and hexagonal-boron nitride coatings.
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How effective is graphene at preventing microbial corrosion?
Boron ink assisted in situ boron nitride coatings for anti-oxidation and anti-corrosion applications.
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What are the potential applications of graphene for preventing microbial corrosion?
Use of graphene as protection film in biological environments.
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What are the water impacts of UOP in ND?
Potential water resource impacts of hydraulic fracturing from unconventional oil production in the Bakken shale.
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What are the risks of UOP to water resources?
Potential water resource impacts of hydraulic fracturing from unconventional oil production in the Bakken shale.
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How are water impacts from UOP managed?
Potential water resource impacts of hydraulic fracturing from unconventional oil production in the Bakken shale.
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Which model is better for predicting hydrogen evolution in dark fermentation?
State-of-the-art technologies for continuous high-rate biohydrogen production.
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What are the limitations of the Gompertz equation?
Modeling and predicting the biofilm formation of Salmonella Virchow with respect to temperature and pH.
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What are the key parameters for hydrogen production?
Fundamental processes of protein folding: measuring the energetic balance between helix formation and hydrophobic interactions.
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How do mediators help in MFCs?
Modeling the impact of interspecies competition on performance of a microbial fuel cell.
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How can EIS evaluate mediators in MFCs?
Characterization of anode and anolyte community growth and the impact of impedance in a microbial fuel cell.
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What are the advantages of EIS over other methods?
The accurate use of impedance analysis for the study of microbial electrochemical systems.
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How MFC produce sustainable energy?
Enhancement in hydrogen evolution using Au-TiO2 hollow spheres with microbial devices modified with conjugated oligoelectrolytes.
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What are the types of MXC?
Evaluation of limiting factors for current density in microbial electrochemical cells (MXCs) treating domestic wastewater.
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What are the applications of MXC?
Evaluation of limiting factors for current density in microbial electrochemical cells (MXCs) treating domestic wastewater.
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How extremophiles enable MES in harsh conditions?
Bioelectrochemical conversion of CO2 to chemicals: CO2 as a next generation feedstock for electricity-driven bioproduction in batch and continuous modes.
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What are the fundamental aspects of halophiles and thermophiles in MESs?
Mechanisms of palatal epithelial seam disintegration by transforming growth factor (TGF) beta3.
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What are the mechanisms of exceptional electrocatalytic performance of extremophiles in MESs?
Bringing High-Rate, CO2-Based Microbial Electrosynthesis Closer to Practical Implementation through Improved Electrode Design and Operating Conditions.
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Why consider net energy gain in DF?
Knee pain interventions show no net gain.
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What's the optimal temp for DF net energy gain?
Knee pain interventions show no net gain.
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Why DF + MFC better than DF + AD?
Molecular and microscopic assessment of the effects of caffeine, acetaminophen, diclofenac, and their mixtures on river biofilm communities.
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What makes sulfur鈥搒elenium alloy a good corrosion-resistant coating?
Immobilization of bioactive complex on the surface of magnesium alloy stent material to simultaneously improve anticorrosion, hemocompatibility and antibacterial activities.
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How does sulfur鈥搒eleniume coating improve steel's corrosion resistance?
Hexagonal Boron Nitride for Sulfur Corrosion Inhibition.
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What are the future research directions for sulfur鈥搒elenium alloy coatings?
Linked redox precipitation of sulfur and selenium under anaerobic conditions by sulfate-reducing bacterial biofilms.
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How did FSW join MA956 alloys without disturbing dispersion?
Do not disturb: the importance of privacy in labor.
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What were the effects of post weld heat treatment in friction welds of MA956 alloys?
Investigating the microbial-influenced corrosion of UNS S32750 stainless-steel base alloy and weld seams by biofilm-forming marine bacterium Macrococcus equipercicus.
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What are the potential applications of friction stir weld Invar?
Enhanced antibacterial properties and the cellular response of stainless steel through friction stir processing.
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How does MAGE enhance corrosion resistance?
Formation mechanism, degradation behavior, and cytocompatibility of a double-layered structural MAO/rGO-CaP coating on AZ31 Mg.
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What are the advantages of MAGE coatings?
The XBabelPhish MAGE-ML and XML translator.
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What are the potential applications of MAGE coatings?
Melanoma cells present a MAGE-3 epitope to CD4(+) cytotoxic T cells in association with histocompatibility leukocyte antigen DR11.
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How does solute segregation affect annealing behavior of 6061 cold spray?
Neural substrate of cold-seeking behavior in endotoxin shock.
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What are the implications of annealing behavior for mechanical properties?
Functionalized Graphene for Mechanical Property Enhancement of Polymer Composites.
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What are the potential applications of 6061 cold spray?
Removing biofilms from microstructured titanium ex vivo: a novel approach using atmospheric plasma technology.
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What genes are involved in SRB biofilm formation and corrosion?
Effect of Quorum Sensing on the Ability of Desulfovibrio vulgaris To Form Biofilms and To Biocorrode Carbon Steel in Saline Conditions.
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How can SRB biofilms be controlled?
How easily malaria can be missed.
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How can surface engineering be used to control biofilm formation?
Physicochemical regulation of biofilm formation.
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What were the optimum welding parameters for FSW of 5052-H34 and 7075-T6?
Study of the corrosion behavior of Aspergillus niger on 7075-T6 aluminum alloy in a high salinity environment.
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What were the results of the mechanical tests in welding of 5052-H34 and 7075-T6?
Study of the corrosion behavior of Aspergillus niger on 7075-T6 aluminum alloy in a high salinity environment.
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What were the findings of the fatigue tests in welding of 5052-H34 and 7075-T6?
Study of the corrosion behavior of Aspergillus niger on 7075-T6 aluminum alloy in a high salinity environment.
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How does plunge depth, bonding area, and top sheet position affect the weld between steel and aluminium?
Investigating the microbial-influenced corrosion of UNS S32750 stainless-steel base alloy and weld seams by biofilm-forming marine bacterium Macrococcus equipercicus.
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Why did steel flash control the joint strength the weld between steel and aluminium?
Investigating the microbial-influenced corrosion of UNS S32750 stainless-steel base alloy and weld seams by biofilm-forming marine bacterium Macrococcus equipercicus.
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What is the significance of achieving a joint efficiency of 58% in the weld between steel and aluminium?
Investigating the microbial-influenced corrosion of UNS S32750 stainless-steel base alloy and weld seams by biofilm-forming marine bacterium Macrococcus equipercicus.
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Why is joining aluminum and steel with fusion welding challenging?
In vitro RPM fibrogenic potential assay of welding fumes.
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How does FSS welding overcome challanges in aluminum and steel fusion welding?
In vitro RPM fibrogenic potential assay of welding fumes.
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What was the optimum size of the scribe insert in aluminum and steel weld?
Evaluation of chlorines' impact on biofilms on scratched stainless steel surfaces.
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What makes sulfur鈥搒elenium alloy a good corrosion-resistant coating?
Immobilization of bioactive complex on the surface of magnesium alloy stent material to simultaneously improve anticorrosion, hemocompatibility and antibacterial activities.
Extract publication title from the input
How does sulfur鈥搒elenium coating improve steel's corrosion resistance?
Hexagonal Boron Nitride for Sulfur Corrosion Inhibition.
Extract publication title from the input
What are the future research directions for sulfur鈥搒elenium alloy coatings?
Linked redox precipitation of sulfur and selenium under anaerobic conditions by sulfate-reducing bacterial biofilms.
Extract publication title from the input
How did FSW join MA956 alloys without disturbing dispersion?
Do not disturb: the importance of privacy in labor.
Extract publication title from the input
What were the effects of post weld heat treatment in friction welds of MA956 alloys?
Investigating the microbial-influenced corrosion of UNS S32750 stainless-steel base alloy and weld seams by biofilm-forming marine bacterium Macrococcus equipercicus.
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How was oxide dispersion analyzed in friction welds of MA956 alloys?
Investigating the microbial-influenced corrosion of UNS S32750 stainless-steel base alloy and weld seams by biofilm-forming marine bacterium Macrococcus equipercicus.
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What are the challenges of welding bulk metallic glass?
Anomalous compression behavior in lanthanum/cerium-based metallic glass under high pressure.
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How does FSW overcome challenges in welding of bulk metallic glass?
In vitro RPM fibrogenic potential assay of welding fumes.
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What are the implications of SRO domain size changes in welding of bulk metallic glass?
In vitro RPM fibrogenic potential assay of welding fumes.