Clinical studies reveal that diabetic patients who are non-dependent on insulin have improved metabolic control when placed on a high-fructose, low-glucose diet. The complete oxidation of D-fructose, C5H1005, involves: C5H1005(s) + 5 O2(g) 5 CO2(g) + 5 H₂O (1) Consider the following molar masses: C5H1005 (150.1 g/mol), O2 (32.00 g/mol), CO₂ (44.01 g/mol), H₂O (18.02) Instructions: Fill in the blanks by writing only the numerical value, in correct significant figures, without the units. 1. The complete oxidation of 0.30 mole of D-fructose requires 2. To completely convert 5.0 molecules of D-fructose into carbon dioxide and water, are needed. 3. moles of O₂. 4. molecules of oxygen gas micrograms of O₂ is needed to completely oxidize a quadrillion (i.e. 1015) molecules of D-fructose? Express your answer in 1 significant figure Recall 1 g = 106 µg grams of oxygen gas is needed to convert 3.0 g of D-fructose into carbon dioxide and water.

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gel gas to form 1 molecule of the ceramic.
28 grams of silicon react with 28 grams of nitrogen gas to form 1 mole of the ceramic
3 grams of silicon react with 2 grams of nitrogen gas to form 1 gram of the ceramic.
3 moles of silicon react with 2 moles of nitrogen gas to form 1 mole of the ceramic.
3 molecules of silicon react with 2 molecules of nitrogen gas to form 1 molecule of the ceramic.
84 grams of silicon react with 56 grams of nitrogen gas to form 1 mole of the ceramic
Clinical studies reveal that diabetic patients who are non-dependent on insulin have improved metabolic control when placed
on a high-fructose, low-glucose diet. The complete oxidation of D-fructose, C5H1005, involves:
C5H1005(s) + 5 O2(g) → 5 CO2(g) + 5 H₂0 (1)
Consider the following molar masses: C5H1005 (150.1 g/mol), O₂ (32.00 g/mol), CO₂ (44.01 g/mol), H₂O (18.02)
Instructions: Fill in the blanks by writing only the numerical value, in correct significant figures, without the units.
1. The complete oxidation of 0.30 mole of D-fructose requires
moles of O₂.
2. To completely convert 5.0 molecules of D-fructose into carbon dioxide and water,
are needed.
3.
4.
Time left 0:28:19
your answer in 1 significant figure. Recall 1 g
molecules of oxygen gas
micrograms of O₂ is needed to completely oxidize a quadrillion (i.e. 1015) molecules of D-fructose? Express
106 ag
grams of oxygen gas is needed to convert 3.0 g of D-fructose into carbon dioxide and water.
Ocpirin (MM = 180.2) is prepared from the reaction of salicylic acid (MM = 138.1) and acetic anhydride (MM = 102.1).
Transcribed Image Text:gel gas to form 1 molecule of the ceramic. 28 grams of silicon react with 28 grams of nitrogen gas to form 1 mole of the ceramic 3 grams of silicon react with 2 grams of nitrogen gas to form 1 gram of the ceramic. 3 moles of silicon react with 2 moles of nitrogen gas to form 1 mole of the ceramic. 3 molecules of silicon react with 2 molecules of nitrogen gas to form 1 molecule of the ceramic. 84 grams of silicon react with 56 grams of nitrogen gas to form 1 mole of the ceramic Clinical studies reveal that diabetic patients who are non-dependent on insulin have improved metabolic control when placed on a high-fructose, low-glucose diet. The complete oxidation of D-fructose, C5H1005, involves: C5H1005(s) + 5 O2(g) → 5 CO2(g) + 5 H₂0 (1) Consider the following molar masses: C5H1005 (150.1 g/mol), O₂ (32.00 g/mol), CO₂ (44.01 g/mol), H₂O (18.02) Instructions: Fill in the blanks by writing only the numerical value, in correct significant figures, without the units. 1. The complete oxidation of 0.30 mole of D-fructose requires moles of O₂. 2. To completely convert 5.0 molecules of D-fructose into carbon dioxide and water, are needed. 3. 4. Time left 0:28:19 your answer in 1 significant figure. Recall 1 g molecules of oxygen gas micrograms of O₂ is needed to completely oxidize a quadrillion (i.e. 1015) molecules of D-fructose? Express 106 ag grams of oxygen gas is needed to convert 3.0 g of D-fructose into carbon dioxide and water. Ocpirin (MM = 180.2) is prepared from the reaction of salicylic acid (MM = 138.1) and acetic anhydride (MM = 102.1).
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