electrical conductivity meter (model 644 Search Results


90
EMSCAN Corporation total-body electrical conductivity analysing system tobec model-sa3000 emscan/tobec sa-3203
Total Body Electrical Conductivity Analysing System Tobec Model Sa3000 Emscan/Tobec Sa 3203, supplied by EMSCAN Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
total-body electrical conductivity analysing system tobec model-sa3000 emscan/tobec sa-3203 - by Bioz Stars, 2026-08
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97
Molecular Devices LLC patch clamp amplifier
Patch Clamp Amplifier, supplied by Molecular Devices LLC, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/bio_rxiv__2022__01__12__475988-41-12-15?v=Molecular+Devices+LLC
Average 97 stars, based on 1 article reviews
patch clamp amplifier - by Bioz Stars, 2026-08
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90
Lincoln Electric flux cored arc welding machine precision 375
Flux Cored Arc Welding Machine Precision 375, supplied by Lincoln Electric, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/10__1016_slash_j__finmec__2023__100189-67-8-14?v=Lincoln+Electric
Average 90 stars, based on 1 article reviews
flux cored arc welding machine precision 375 - by Bioz Stars, 2026-08
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94
Bio-Rad model 422 electro eluter
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Model 422 Electro Eluter, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/pmc06888950-224-7-6?v=Bio-Rad
Average 94 stars, based on 1 article reviews
model 422 electro eluter - by Bioz Stars, 2026-08
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90
OHAUS Corporation electrical conductivity meter model st3100c/f
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Electrical Conductivity Meter Model St3100c/F, supplied by OHAUS Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/pmc07677231-89-19-24?v=OHAUS+Corporation
Average 90 stars, based on 1 article reviews
electrical conductivity meter model st3100c/f - by Bioz Stars, 2026-08
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90
Fondriest Environmental multi-parameter sonde model ysi 8600r
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Multi Parameter Sonde Model Ysi 8600r, supplied by Fondriest Environmental, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/10__1016_slash_j__jhydrol__2017__08__002-54-48-59?v=Fondriest+Environmental
Average 90 stars, based on 1 article reviews
multi-parameter sonde model ysi 8600r - by Bioz Stars, 2026-08
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90
Shanghai INESA Scientific electrical conductivity meter ddsj-319l
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Electrical Conductivity Meter Ddsj 319l, supplied by Shanghai INESA Scientific, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/10__1016_slash_j__scienta__2025__114170-88-20-25?v=Shanghai+INESA+Scientific
Average 90 stars, based on 1 article reviews
electrical conductivity meter ddsj-319l - by Bioz Stars, 2026-08
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86
Jenway Inc conductivity meter
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Conductivity Meter, supplied by Jenway Inc, 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/electrical+conductivity+meter+%28model+644/10__3390_slash_su14073966-77-18-22?v=Jenway+Inc
Average 86 stars, based on 1 article reviews
conductivity meter - by Bioz Stars, 2026-08
86/100 stars
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90
Sper Scientific benchtop conductivity meter model 860032
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Benchtop Conductivity Meter Model 860032, supplied by Sper Scientific, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/10__1016_slash_j__soilbio__2020__107797-101-25-31?v=Sper+Scientific
Average 90 stars, based on 1 article reviews
benchtop conductivity meter model 860032 - by Bioz Stars, 2026-08
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90
METTLER TOLEDO digital mettler toledo® model ag-five easy fe 30 electrical conductivity meter
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Digital Mettler Toledo® Model Ag Five Easy Fe 30 Electrical Conductivity Meter, supplied by METTLER TOLEDO, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/10__1080_slash_23311916__2020__1804713-219-2-3?v=METTLER+TOLEDO
Average 90 stars, based on 1 article reviews
digital mettler toledo® model ag-five easy fe 30 electrical conductivity meter - by Bioz Stars, 2026-08
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90
Advanced Energy Industries Inc advanced energy model 2500e power supply
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Advanced Energy Model 2500e Power Supply, supplied by Advanced Energy Industries Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/us07241428-299-10-7?v=Advanced+Energy+Industries+Inc
Average 90 stars, based on 1 article reviews
advanced energy model 2500e power supply - by Bioz Stars, 2026-08
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95
ADInstruments galvanic skin response bioamplifier
Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad <t>Model</t> <t>422</t> elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.
Galvanic Skin Response Bioamplifier, supplied by ADInstruments, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrical+conductivity+meter+%28model+644/pm41553203-78-14-20?v=ADInstruments
Average 95 stars, based on 1 article reviews
galvanic skin response bioamplifier - by Bioz Stars, 2026-08
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Image Search Results


Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad Model 422 elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.

Journal: Chembiochem

Article Title: Modulation and Visualization of EF‐G Power Stroke During Ribosomal Translocation

doi: 10.1002/cbic.201900276

Figure Lengend Snippet: Design, purification, and activity assay of crosslinked EF‐Gs. A) Crosslinking residues F411 and Y535 (bacterial numbering). B) Separation by continuous elution electrophoresis. Lanes 1 and 4: pure lower and upper bands, respectively; lanes 2 and 3: the transitions from one component to the other. Lanes are numbered from left to right. C) Purification by MiniGel and hand‐incision, followed by Bio‐Rad Model 422 elution. Lanes 1 and 3: purified CL EF‐G with different quantities; lane 2: mixture of un‐crosslinked and crosslinked; lane 4: purified un‐crosslinked EF‐G; lane 5: marker. D) Purification by activated thiol Sepharose 4B. Lanes 1–3 were analyzed after 1 h, 4 h, and overnight incubation time with the beads, respectively. The final purity was approximately 70 %. E) Purification by maleimide‐activated magnetic beads. Lanes 1–3 were analyzed after 1, 2, and 3 h of incubation time, respectively. The final purity was >90 %. F) Radioactivity measurements by the poly(Phe) assay for the WT and two crosslinked EF‐Gs.

Article Snippet: The electroelution was conducted with the Bio‐Rad Model 422 Electro‐Eluter.

Techniques: Purification, Activity Assay, Electrophoresis, Marker, Incubation, Magnetic Beads, Radioactivity