Report all answers with the proper number of significant figures. In an electrolysis experiment similar to the one employed this experiment; a student observed that his unknown metal anode lost 0.238 grams while a total volume of 94.50 mL of hydrogen was being produced. The temperature of the solution was 25°C and the barometric pressure was 739 mm Hg. The difference between the water levels in the beaker and buret was negligible. The vapor pressure of water at 25°C is 23.8 mm Hg. Based on the information provided and the lab handout, what pressure of hydrogen is collected, in atmospheres? Note: Your answer is assumed to be reduced to the highest power possible.

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Chapter1: Chemical Foundations
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Report all answers with the proper number of significant figures.
In an electrolysis experiment similar to the one employed this experiment; a student
observed that his unknown metal anode lost 0.238 grams while a total volume of
94.50 mL of hydrogen was being produced. The temperature of the solution was
25°C and the barometric pressure was 739 mm Hg. The difference between the
water levels in the beaker and buret was negligible. The vapor pressure of water at
25°C is 23.8 mm Hg.
Based on the information provided and the lab handout, what pressure of hydrogen
is collected, in atmospheres?
Note: Your answer is assumed to be reduced to the highest power possible.
Your Answer:
x10
Answer
units
Transcribed Image Text:Report all answers with the proper number of significant figures. In an electrolysis experiment similar to the one employed this experiment; a student observed that his unknown metal anode lost 0.238 grams while a total volume of 94.50 mL of hydrogen was being produced. The temperature of the solution was 25°C and the barometric pressure was 739 mm Hg. The difference between the water levels in the beaker and buret was negligible. The vapor pressure of water at 25°C is 23.8 mm Hg. Based on the information provided and the lab handout, what pressure of hydrogen is collected, in atmospheres? Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: x10 Answer units
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