A team of plasma physicists conducted an experiment to investigate electrical breakdown phenomena in synthetic atmospheric gas mixtures. In a sealed dielectric chamber, researchers systematically varied the volume ratio of nitrogen () to oxygen () across ten trials while recording the threshold breakdown voltage () required to initiate a spark discharge. Throughout all experimental trials, the spacing between the two planar copper electrodes was fixed at , the total cell pressure was held constant at , and the ambient temperature was maintained at .
Match each experimental component from this investigation to its correct variable classification.
- Volume ratio of to Independent Variable (manipulated parameter)
- Threshold breakdown voltage ()Dependent Variable (measured outcome)
- Electrode spacing distance ()Controlled Variable (apparatus geometry parameter)
- Total cell pressure ()Controlled Variable (thermodynamic condition parameter)
Cevap
Volume ratio of to matches Independent Variable (manipulated parameter); Threshold breakdown voltage () matches Dependent Variable (measured outcome); Electrode spacing distance () matches Controlled Variable (apparatus geometry parameter); Total cell pressure () matches Controlled Variable (thermodynamic condition parameter).
In experimental design, the independent variable is the factor intentionally varied by experimenters (the ratio of to ), while the dependent variable is the measured output that changes in response (the threshold breakdown voltage ). Parameters held uniform throughout all trials to maintain experimental integrity are controlled variables, where electrode spacing standardizes apparatus geometry and chamber pressure standardizes ambient thermodynamic conditions.
Adım Adım Çözüm
Anahtar Kavram
Distinguishing between independent variables (manipulated inputs), dependent variables (observed outcomes), and controlled variables (standardized conditions) in experimental design.
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