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【Learning about Ethylene Together】Five questions per day to easily learn about ethylene 07 31. Poisoning caused by chemical toxins can be classified into ( ), ( ), and ( ) categories. 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not directly controlled; this pressure depends on ( ) and ( ). 33. The accuracy of measurement with a vernier caliper is ( ). 33. In a PID regulator, the smaller the integration time, the greater the integration speed ( ), and the stronger the integrating effect ( ). 34. The two basic technical parameters of industrial instruments are ( ) and ( ). 35. In PID control, P, I, and D represent ( ), ( ), and ( ) respectively. 31. Poisoning caused by chemical toxins can be classified into ( ), ( ), and ( ) categories. Acute, Subacute, Chronic. 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not directly controlled; this pressure depends on ( ) and ( ). Equipment pressure drop: Inlet pressure at the first stage of the pyrolysis gas compressor is 33. The accuracy of measurement with a vernier caliper is ( ). 0.1 millimeters 33. In a PID regulator, the smaller the integration time, the greater the integration speed ( ), and the stronger the integrating effect ( ). The larger, the stronger. 34. The two basic technical parameters of industrial instruments are ( ) and ( ). Accuracy level Sensitivity 35. In PID control, P, I, and D represent ( ), ( ), and ( ) respectively. Proportional control, Integral control, Differential control
31. Poisoning caused by chemical toxins can be classified into three categories: (acute), (subacute), and (chronic). 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not controlled directly; this pressure depends on (the equipment pressure drop) and (the suction pressure at the first stage of the pyrolyzer compressor). 33. The accuracy of measurement with a vernier caliper is (0.1mm). 33. In a PID regulator, the smaller the integration time, the greater the integration speed and the stronger the integral action. 34. The two basic technical parameters of industrial instruments are (accuracy) and (sensitivity). 35. In PID control, P, I, and D represent (proportional control), (integral control), and (derivative control), respectively.
31. Poisoning caused by chemical toxins can be classified into three categories: (acute), (subacute), and (chronic). 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not controlled directly; this pressure depends on (the equipment pressure drop) and (the suction pressure at the first stage of the pyrolyzer compressor). 33. The accuracy of measurement with a vernier caliper is (0.1mm). 33. In a PID regulator, the smaller the integration time, the greater the integration speed and the stronger the integral action. 34. The two basic technical parameters of industrial instruments are (accuracy) and (sensitivity). 35. In PID control, P, I, and D represent (proportional control), (integral control), and (derivative control), respectively.
31. Poisoning caused by chemical toxins can be classified into three categories: (acute), (subacute), and (chronic). 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not controlled directly; this pressure depends on (the equipment pressure drop) and (the suction pressure at the first stage of the pyrolyzer compressor). 33. The accuracy of measurement with a vernier caliper is (0.1mm). 33. In a PID regulator, the smaller the integration time, the greater the integration speed and the stronger the integral action. 34. The two basic technical parameters of industrial instruments are (accuracy) and (sensitivity). 35. In PID control, P, I, and D represent (proportional control), (integral control), and (derivative control), respectively.
31. Poisoning caused by chemical toxins can be classified into three categories: (acute), (subacute), and (chronic). 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not controlled directly; this pressure depends on (the equipment pressure drop) and (the suction pressure at the first stage of the pyrolyzer compressor). 33. The accuracy of measurement with a vernier caliper is (0.1mm). 33. In a PID regulator, the smaller the integration time, the greater the integration speed and the stronger the integral action. 34. The two basic technical parameters of industrial instruments are (accuracy) and (sensitivity). 35. In PID control, P, I, and D represent (proportional control), (integral control), and (derivative control), respectively.
31. Poisoning caused by chemical toxins can be classified into three categories: (acute), (subacute), and (chronic). 32. The pressure of the pyrolysis gas at the outlet of the pyrolyzer is not controlled directly; this pressure depends on (the equipment pressure drop) and (the suction pressure at the first stage of the pyrolyzer compressor). 33. The accuracy of measurement with a vernier caliper is (0.1mm). 33. In a PID regulator, the smaller the integration time, the greater the integration speed and the stronger the integral action. 34. The two basic technical parameters of industrial instruments are (accuracy) and (sensitivity). 35. In PID control, P, I, and D represent (proportional control), (integral control), and (derivative control), respectively.