EBK EXPERIENCING MIS,
EBK EXPERIENCING MIS,
8th Edition
ISBN: 9780134792729
Author: BOYLE
Publisher: PEARSON CUSTOM PUB.(CONSIGNMENT)
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Chapter 2.4, Problem 2SW
Program Plan Intro

HoloLens:

Microsoft recently introduced the HoloLens which is quite similar to Google glasses.

  • Google glass provides virtual reality which means the real life will be visible through the glass interface which superimposes the interface and other contents on top of the real world.
  • It facilitates widows mixed reality under windows 10 operating system.
  • It is also a great addition to the Microsoft’s Xbox gaming edition.
  • In today’s world HoloLens are not only in use as a gaming product but also for many other uses.

Oculus rift:

It is a virtual reality headset which was basically designed for gaming industry by Palmer Luckey. It was purchased by Facebook in March 2014 after working as an independent company for two months. Today, it is also in non-gaming industries like media, sports, education, industry and many more.

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[5 marks] Give a recursive definition for the language anb2n where n = 1, 2, 3, ... over the alphabet Ó={a, b}. 2) [12 marks] Consider the following languages over the alphabet ƒ={a ,b}, (i) The language of all words that begin and end an a (ii) The language where every a in a word is immediately followed by at least one b. (a) Express each as a Regular Expression (b) Draw an FA for each language (c) For Language (i), draw a TG using at most 3 states (d) For Language (ii), construct a CFG.
Question 1 Generate a random sample of standard lognormal data (rlnorm()) for sample size n = 100. Construct histogram estimates of density for this sample using Sturges’ Rule, Scott’s Normal Reference Rule, and the FD Rule. Question 2 Construct a frequency polygon density estimate for the sample in Question 1, using bin width determined by Sturges’ Rule.
Generate a random sample of standard lognormal data (rlnorm()) for sample size n = 100. Construct histogram estimates of density for this sample using Sturges’ Rule, Scott’s Normal Reference Rule, and the FD Rule.
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