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Keysight Technologies programmable electronic load
Programmable Electronic Load, supplied by Keysight Technologies, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electronic+load/dc+electronic+load/10__1007_slash_s42835___026___02738___4-104-1-7
Average 86 stars, based on 1 article reviews
programmable electronic load - by Bioz Stars, 2026-09
86/100 stars

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Article Title: The influence of dynamic load changes on temporary impedance in hydrogen fuel cells, selection and validation of the electrical equivalent circuit
Article Snippet: To achieve optimal performance of a fuel cell, a reliable monitoring and diagnostic method is required.. The currently utilized methods give limited information or they are impossible to use under dynamic working conditions.. To obtain comprehensive information about the fuel cell operation we utilized novel dynamic electrochemical impedance spectroscopy.



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( A ) Particle size and PDI of quinoa peptide nanoparticles (QPNPs). ( B ) Zeta potentials of QPNPs. ( C ) Transmission electron microscopy (TEM) images of QPNPs, scale bar: 100 nm. Chy-QPNPs, Try-QPNPs, and Alc-QPNPs refer to QPNPs prepared by controllable enzymolysis of α-chymotrypsin, trypsin, and Alcalase 2.4L, respectively. Different letters on columns mean significantly different ( p < 0.05).

Journal: Foods

Article Title: Development and Characterization of Quinoa Peptide Nanoparticles as Carriers for Bioactive Food Ingredient Encapsulation

doi: 10.3390/foods15091589

Figure Lengend Snippet: ( A ) Particle size and PDI of quinoa peptide nanoparticles (QPNPs). ( B ) Zeta potentials of QPNPs. ( C ) Transmission electron microscopy (TEM) images of QPNPs, scale bar: 100 nm. Chy-QPNPs, Try-QPNPs, and Alc-QPNPs refer to QPNPs prepared by controllable enzymolysis of α-chymotrypsin, trypsin, and Alcalase 2.4L, respectively. Different letters on columns mean significantly different ( p < 0.05).

Article Snippet: The morphologies of QPNPs and CAPE-loaded QPNPs (CAPE-QPNPs) were observed using a transmission electron microscope (JEM-2100, JEOL Ltd., Tokyo, Japan) according to a previously reported method [ ] with some modifications.

Techniques: Transmission Assay, Electron Microscopy

( A ) Surface tension of quinoa peptide nanoparticles (QPNPs). ( B ) Fourier transform infrared spectroscopy (FT-IR) of QPNPs. ( C ) Effect of different denaturants on the particle size of QPNPs, 1: deionized water; 2: SDS; 3: DTT; 4: Urea; 5: SDS + DTT; 6: DTT + Urea; 7: SDS + Urea; 8: SDS + DTT +Urea. Different letters on columns mean significantly different ( p < 0.05). Chy-QPNPs, Try-QPNPs, and Alc-QPNPs refer to QPNPs prepared by controllable enzymolysis of α-chymotrypsin, trypsin, and Alcalase 2.4L, respectively.

Journal: Foods

Article Title: Development and Characterization of Quinoa Peptide Nanoparticles as Carriers for Bioactive Food Ingredient Encapsulation

doi: 10.3390/foods15091589

Figure Lengend Snippet: ( A ) Surface tension of quinoa peptide nanoparticles (QPNPs). ( B ) Fourier transform infrared spectroscopy (FT-IR) of QPNPs. ( C ) Effect of different denaturants on the particle size of QPNPs, 1: deionized water; 2: SDS; 3: DTT; 4: Urea; 5: SDS + DTT; 6: DTT + Urea; 7: SDS + Urea; 8: SDS + DTT +Urea. Different letters on columns mean significantly different ( p < 0.05). Chy-QPNPs, Try-QPNPs, and Alc-QPNPs refer to QPNPs prepared by controllable enzymolysis of α-chymotrypsin, trypsin, and Alcalase 2.4L, respectively.

Article Snippet: The morphologies of QPNPs and CAPE-loaded QPNPs (CAPE-QPNPs) were observed using a transmission electron microscope (JEM-2100, JEOL Ltd., Tokyo, Japan) according to a previously reported method [ ] with some modifications.

Techniques: Fourier Transform Infrared Spectroscopy, Spectroscopy

( A ) Particle size distribution of CAPE-loaded QPNPs (CAPE-QPNPs) (Inset: TEM images of CAPE-QPNPs), the different colors represent three independent replicate experiments. ( B ) Fourier transform infrared spectroscopy (FT-IR) of CAPE, QPNPs, and CAPE-QPNPs. ( C ) Secondary structure proportion of QPNPs and CAPE-QPNPs, * p < 0.05, ** p < 0.01.

Journal: Foods

Article Title: Development and Characterization of Quinoa Peptide Nanoparticles as Carriers for Bioactive Food Ingredient Encapsulation

doi: 10.3390/foods15091589

Figure Lengend Snippet: ( A ) Particle size distribution of CAPE-loaded QPNPs (CAPE-QPNPs) (Inset: TEM images of CAPE-QPNPs), the different colors represent three independent replicate experiments. ( B ) Fourier transform infrared spectroscopy (FT-IR) of CAPE, QPNPs, and CAPE-QPNPs. ( C ) Secondary structure proportion of QPNPs and CAPE-QPNPs, * p < 0.05, ** p < 0.01.

Article Snippet: The morphologies of QPNPs and CAPE-loaded QPNPs (CAPE-QPNPs) were observed using a transmission electron microscope (JEM-2100, JEOL Ltd., Tokyo, Japan) according to a previously reported method [ ] with some modifications.

Techniques: Fourier Transform Infrared Spectroscopy, Spectroscopy

( A ) Effect of temperatures on the remaining amount of CAPE in CAPE-loaded QPNPs (CAPE-QPNPs), * p < 0.05, ** p < 0.01, *** p < 0.001. ( B ) Effect of irradiation on the remaining amount of CAPE in CAPE-QPNPs. ( C ) Effect of storage time on the particle size of CAPE-QPNPs at 4 °C and 25 °C. ( D ) Effect of storage time on the remaining amount of CAPE in CAPE-QPNPs at 4 °C and 25 °C.

Journal: Foods

Article Title: Development and Characterization of Quinoa Peptide Nanoparticles as Carriers for Bioactive Food Ingredient Encapsulation

doi: 10.3390/foods15091589

Figure Lengend Snippet: ( A ) Effect of temperatures on the remaining amount of CAPE in CAPE-loaded QPNPs (CAPE-QPNPs), * p < 0.05, ** p < 0.01, *** p < 0.001. ( B ) Effect of irradiation on the remaining amount of CAPE in CAPE-QPNPs. ( C ) Effect of storage time on the particle size of CAPE-QPNPs at 4 °C and 25 °C. ( D ) Effect of storage time on the remaining amount of CAPE in CAPE-QPNPs at 4 °C and 25 °C.

Article Snippet: The morphologies of QPNPs and CAPE-loaded QPNPs (CAPE-QPNPs) were observed using a transmission electron microscope (JEM-2100, JEOL Ltd., Tokyo, Japan) according to a previously reported method [ ] with some modifications.

Techniques: Irradiation

In vitro release profile of CAPE-loaded QPNPs (CAPE-QPNPs) in simulated gastric fluid (SGF) and intestinal fluid (SIF). The dotted lines indicate the transition from SGF to SIF and the end of the intestinal digestion phase, respectively.

Journal: Foods

Article Title: Development and Characterization of Quinoa Peptide Nanoparticles as Carriers for Bioactive Food Ingredient Encapsulation

doi: 10.3390/foods15091589

Figure Lengend Snippet: In vitro release profile of CAPE-loaded QPNPs (CAPE-QPNPs) in simulated gastric fluid (SGF) and intestinal fluid (SIF). The dotted lines indicate the transition from SGF to SIF and the end of the intestinal digestion phase, respectively.

Article Snippet: The morphologies of QPNPs and CAPE-loaded QPNPs (CAPE-QPNPs) were observed using a transmission electron microscope (JEM-2100, JEOL Ltd., Tokyo, Japan) according to a previously reported method [ ] with some modifications.

Techniques: In Vitro