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1. Data Anomalies - Explain in your own words using tables from a lab project. Also describe how such anomalies could be prevented.
2. Normalization - Assume that you have not read this lecture and you have created your lab project (tables). Do you think your tables in your project are normalized? Explain how this session helped your project? What are your thoughts on normalization?
Air enters a 0.6-m-diameter fan at 16°C, 101 kPa, and is discharged at 18°C, 105 kPa, with a volumetric flow rate of 0.35 m3 /s. Assuming ideal gas behavior, determine for steadystate operation
In "C", Write a main function and the following to compute the stress and strain in a steel rod of Diameter (D) inches and length (L) subject to the compression loads P of 10,000 to 1,000,000 pounds in increments of 100,000 pounds. The modulus of ..
Have the class explain in terms of queuing theory why the revised layout has achieved the remarkable reductions in average and maximum hold times.
1. Prove that any comparison-based sorting algorithm requires 0.(N log N) compar- isons on average.
Are there characteristics of stocks that seem to lead to larger gains? Does this provide insight into when pairs trading might work or fail?
Assume in each of the following cases that the initial set of process user IDs is real=1000 effective=0 saved=0 file-system=0. What would be the state of the user IDs after the following calls?
Show that the performance ratio of your approximation algorithm is in- finitely large.
Create a Deque class based on the discussion of deques (double-ended queues) in this chapter. It should include insertLeft(), insertRight(), removeLeft(), removeRight(), isEmpty(), and isFull() methods. It will need to support wraparound at the en..
The mass of refrigerant is 0.04 lb. For the refrigerant as the system, W = -0.56 Btu. Kinetic and potential energy effects are negligible. Determine the final temperature, in F.
To be sure that you fully understand the insertion algorithm, insert 32 into the 2-3 tree in Figure 19-11. The result should be the tree shown in Figure 19-6 b. Once again, compare this tree with the binary search tree in Figure 19-6 a and notice ..
Write an assembly-language program to multiply two binary numbers using the simple CPU of Section 3.10. How large are the integers that can be multiplied without producing numbers that are too large to be recorded in registers?
Imagine that you have just started your own freelancing business. You have been hired to create a Web page for a company of your choice that announces the item of the week, month, or year. (e.g., Car of the Year, Pet of the Month, Sandwich of the Wee..
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