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This post was last edited by zjp on 2015-12-4 at 18:44. To increase the popularity of the chemical analysis section, a \"One Question per Day\" campaign has been launched; this aims to foster active technical exchanges while also providing financial rewards to users. 【Daily Question】 (Single-choice question) In gas-liquid chromatography, the flame ionization detector ( ) is superior to the thermal conductivity detector. A. Simplified design B. Sensitivity C. Scope of application D. Separation efficiency. Correct answer: B. Post your answer in the replies; participating in the quiz earns you +2 wealth points. Getting all answers correct grants an additional +3 to +8 wealth points. Those who provide thorough analyses and explanations for the questions or answers (or include detailed calculation processes) will receive extra wealth points as a reward. If your answer is correct and your analysis/explanation is accurate, it will be marked as the best reply (or the best assistance). Feel free to answer the questions. Note: We will close this post after 24 hours, and at that time we will announce the best reply (the best assistance), as well as the answer and explanation.
In gas-liquid chromatography, the flame ionization detector (B) is superior to the thermal conductivity detector. A Simplification of the device B Sensitivity C Scope of application D Separation efficiency
In gas-liquid chromatography, the flame ionization detector (B) is superior to the thermal conductivity detector. A Simplification of the device B Sensitivity C Scope of application D Separation efficiency
In gas-liquid chromatography, the flame ionization detector (b) is superior to the thermal conductivity detector. A Simplification of the device B Sensitivity C Scope of application D Separation efficiency
In gas-liquid chromatography, the flame ionization detector (with B sensitivity) is superior to the thermal conductivity detector.
In gas-liquid chromatography, the flame ionization detector (with B sensitivity) is superior to the thermal conductivity detector.
In gas-liquid chromatography, the flame ionization detector (B) is superior to the thermal conductivity detector. A Simplification of the device B Sensitivity C Scope of application D Separation efficiency
In gas-liquid chromatography, the flame ionization detector (B) is superior to the thermal conductivity detector.
In gas-liquid chromatography, the flame ionization detector (B) is superior to the thermal conductivity detector. A Simplification of the device B Sensitivity C Scope of application D Separation efficiency
In gas-liquid chromatography, the flame ionization detector (B) is superior to the thermal conductivity detector. A Simplification of the device B Sensitivity C Scope of application D Separation efficiency
B. More sensitive. ---------------------------