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Hi, I am supposed to number the carbons in a skeletal structure of ribose lacking H groups.
I am unsure which C's lack H groups as I believe all carbons contain an H group in ribos.
The hydrolysis of glucose-1-phosphate to glucose and Pi has a standard free energy of -5 Kcal/mol. What's the equilibrium constant for the reaction
Depict three structures of three sulfur containing acids. Decrease formal charges by expanding sulfur's octet. Include any non-bonded electrons on sulfur only.
Write the SQL command to complete each step. Create a database with two tables: Customers (Cust_ID, First, Last, Balance, CreditLimit, Rep_ID) and Sales_Rep (Rep_ID, Rep_First, Rep_Last, Per_Hour). For simplicity, use Short text for data type except ..
Problem- Suppose a heat source generates heat at a rate of 74.0 W (1 W = 1 J/s). How much entropy does this produce per hour in the surroundings at 26.0 °C. Assume the heat transfer is reversible.
A 3.00-L flask is filled with gaseous ammonia, NH3. The gas pressure measured at 27.0 C is 2.05 atm. Assuming ideal gas behavior, how many grams of ammonia are in the flask
How do you make a supersaturated solution. How is this different than a "saturated" solution
Predict the product(s) and write a balanced equation for the following redox reaction: (include state os matter) pentane(C5H12) + oxygen >
How would the rate of disappearance of ethyl bromide change if the solution were diluted by adding an equal volume of pure ethyl alcohol to the solution? The reaction between ethyl bromide (C2H5Br) and hydroxide ion in ethyl alcohol
Calculate the standard Helmholtz free energy of formation of delta fA of CH3OH(l) at 298K from the standard Gibbs free energy of formation and the assumption that H2 and O2 are ideal gases.
Why isn't HBrO a stronger acid than HBr. Doesn't the acid strength increase with the amount of oxygens.
Calculate the heat released when 25.0 g of water at 0 degrees C crystallizes to ice at the same temp. The specific heat of water is 1.00 cal/(g *degrees C); the heat of fusion is 80.0 cal/g and the heat of vaporization is 540.0 cal/g.
For the following reactions, write the balanced formula equation, complete ionic equation, and net ionic equation. (Use the lowest possible coefficients.
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