99 Problems (2010)


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99 Scala problems Origins In August 2014 I've created a blog post, where I've stated that I will challenge myself to solve well known 99 Scala problems in 333 days. This project holds a code repository for the solutions I came up with during the challenge. ##Follow my travel While solving the problems, I try to my journey on my blog


99 Problems

And Scala 99 problems. 2 Likes mario-galic July 13, 2020, 6:21pm 4 Hands-on Scala Programming, by Li Haoyi, contains exercises and solutions: Starting from chapter 5, every chapter come with some exercises at the end…


GitHub 99XProblems/99ScalaProblems 99 Scala Problems

Scala: 99 problems My colleague Liz Douglass and I have been playing around with Scala and Liz recently pointed out Phil Gold's ' Ninety Nine Scala Problems ' which we've been working through. One in particular which is quite interesting is number 7 where we need to flatten a nested list structure. Therefore given this input:


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The problems have different levels of difficulty. Those marked with a single asterisk (*) are easy. If you have successfully solved the preceeding problems you should be able to solve them within a few (say 15) minutes. Problems marked with two asterisks (**) are of intermediate difficulty.


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Solution: import scala. io. StdIn. _ val name = readLine ("Enter your name: ") println ("Enter your age: ") val age = readInt () println ( Console. BOLD) print ("Name: ") print ( Console.


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99 Scala Problems Index By Leonardo Giordani - 07/04/2015 Updated on Feb 28, 2019 Programming Scala functional programming Share on: Twitter LinkedIn HackerNews Email Reddit I decided to learn Scala.


99 Problems (2010)

99-scala-problems is a Scala library typically used in Programming Style, Functional Programming, Example Codes applications. 99-scala-problems has no vulnerabilities and it has low support. However 99-scala-problems has 50 bugs. You can download it from GitHub. Solutions to programming problems from This is a scala adaptation of Support Quality


Solved Solve the problems in Scala using a combination of

Solutions for 99 Scala Problems(http://aperiodic.net/phil/scala/s-99/) - Scala99Problems/README.md at master · TrafalgarZZZ/Scala99Problems


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A series of Scala-focused programming problems. Adapted from Werner Hett's Ninety-Nine Prolog Problems.. S-99: Ninety-Nine Scala Problems. 2 Annual 2009, upgraded 10 Feb 2023. Table concerning Contents. Working is tabbed. P01 (*) Find the continue element out a list. P02 (*) Find the previous however one element by a list.


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Working through the 99 scala problems and confused by problem 23. To my eyes, the example is incongruent with the stated problem. Specifically the Symbol 'e in the resulting list isn't in among the input.. Furthermore, these Scala problems are an adaptation of these Ninety-Nine Prolog Problems. You can see the equivalent question there,.


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Inspired by my friend Peter Brachwitz, I also decided to tackle on the "99 problems". He had the noble new-year resolution to solve these problems in Clojure, and post the solutions on his blog. I think it's an excellent idea where both the writer and the reader benefit.


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99-scala-problems Solutions and tests for Phil Gold's S-99: Ninety-Nine Scala Problems. Table of Contents Lists Arithmetic Logic and Codes Binary Trees Multiway Trees Graphs Miscellaneous Lists P01 (*) Find the last element of a list. scala > last ( List ( 1, 1, 2, 3, 5, 8 )) res0: Int = 8 P02 (*) Find the last but one element of a list.


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You can also use sbt test from the command-line but\nthat's longer since the JVM has to be started everytime.

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Use test-only org.p99.scala.P00Spec to test only the problem 00.

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This repository provides some solution to the 99 scala problems. See: http://aperiodic.net/phil/scala/s-99/ P01 (*) Find the last element of a list Example: scala> last (List (1, 1, 2, 3, 5, 8)) res0: Int = 8 blue-print solution P02 (*) Find the last but one element of a list. Example: scala> penultimate (List (1, 1, 2, 3, 5, 8)) res0: Int = 5


GitHub anandrajneesh/Scala99 [Famous problems with

A recursive solution can be written based on this simple algorithm: the number N is used as a countdown, keeping elements until it reaches the value 1. Then the current element is discarded and the process continues with a countdown reset.


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Problems marked with two asterisks () are of intermediate difficulty. If you are a skilled Scala programmer it shouldn't take you more than 30-90 minutes to solve them. Problems marked with three asterisks () are more difficult. You may need more time (i.e. a few hours or more) to find a good solution.