{ "metadata": { "name": "", "signature": "sha256:22dbf664bff583df60a7371a6f741be85c976f32fe9bef5f00f146ca5848d933" }, "nbformat": 3, "nbformat_minor": 0, "worksheets": [ { "cells": [ { "cell_type": "heading", "level": 1, "metadata": {}, "source": [ "Chapter 5 : Structured Programming" ] }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.1, Page No 116" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def addTwoNumbers(operand1,operand2):\n", " return operand1+operand2\n", "\n", "print \"Nothing happenning here\"" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "Nothing happenning here\n" ] } ], "prompt_number": 1 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.2, Page No 118" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def addTwoNumbers(num1,num2):\n", " return num1+num2\n", "\n", "def subtractTwoNumber(num1,num2):\n", " return num1-num2\n", "\n", "print \"Nothing happenning here\"" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "Nothing happenning here\n" ] } ], "prompt_number": 3 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.3, Page No 119" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def addTwoNumbers(operand1,operand2):\n", " return operand1+operand2\n", "\n", "\n", "iResult= addTwoNumbers(5,5)" ], "language": "python", "metadata": {}, "outputs": [], "prompt_number": 1 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.4, Page No 120" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def addTwoNumbers(operand1,operand2):\n", " return operand1+operand2\n", "\n", "print \"The result is : \",addTwoNumbers(5,5)" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "The result is : 10\n" ] } ], "prompt_number": 7 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.5, Page No 120" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def addTwoNumbers(operand1,operand2):\n", " return operand1+operand2\n", "\n", "num1=int(raw_input(\"Enter the first number: \"))\n", "num2=int(raw_input(\"Enter the second number: \"))\n", "print \"The result is: \",addTwoNumbers(num1,num2)" ], "language": "python", "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "stream": "stdout", "text": [ "Enter the first number: 57\n" ] }, { "name": "stdout", "output_type": "stream", "stream": "stdout", "text": [ "Enter the second number: 43\n" ] }, { "output_type": "stream", "stream": "stdout", "text": [ "The result is: 100\n" ] } ], "prompt_number": 9 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.6, Page No 121" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def printReportHeader():\n", " print \"\\n Column1 \\t Column2 \\t Column3 \\t Column4 \\n\"\n", " \n", "printReportHeader()" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "\n", " Column1 \t Column2 \t Column3 \t Column4 \n", "\n" ] } ], "prompt_number": 11 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.7, Page No 122" ] }, { "cell_type": "code", "collapsed": false, "input": [ "num1=int(raw_input(\"Enter a number: \"))\n", "print \"You entered \",num1" ], "language": "python", "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "stream": "stdout", "text": [ "Enter a number: 10\n" ] }, { "output_type": "stream", "stream": "stdout", "text": [ "You entered 10\n" ] } ], "prompt_number": 12 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.8, Page No 123" ] }, { "cell_type": "code", "collapsed": false, "input": [ "def getSecondNumber():\n", " num1=int(raw_input(\"Enter Second number: \"))\n", " return num1\n", "\n", "num1=int(raw_input(\"Enter a number: \"))\n", "num2=getSecondNumber()\n", "print \"you entered \"+str(num1)+\" and \",str(num2)" ], "language": "python", "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "stream": "stdout", "text": [ "Enter a number: 28\n" ] }, { "name": "stdout", "output_type": "stream", "stream": "stdout", "text": [ "Enter Second number: 35\n" ] }, { "output_type": "stream", "stream": "stdout", "text": [ "you entered 28 and 35\n" ] } ], "prompt_number": 17 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.9, Page No 124" ] }, { "cell_type": "code", "collapsed": false, "input": [ "iLuckyNumber=int()\n", "def printLuckyNumber():\n", " print \"Your lucky number is: \",iLuckyNumber\n", "\n", "\n", "iLuckyNumber=int(raw_input(\"Enter your lucky number: \"))\n", "printLuckyNumber()" ], "language": "python", "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "stream": "stdout", "text": [ "Enter your lucky number: 10\n" ] }, { "output_type": "stream", "stream": "stdout", "text": [ "Your lucky number is: 10\n" ] } ], "prompt_number": 19 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Example 5.10, Page No 126" ] }, { "cell_type": "code", "collapsed": false, "input": [ "import os\n", "import time\n", "def sportsQuestion():\n", " print \"Sports Question\"\n", " print \"What University did NFL star Deon Sanders attend?\"\n", " print \"1 \\t University of Miami\"\n", " print \"2 \\t California State University\"\n", " print \"3 \\t Indiana University\"\n", " print \"4 \\t Florida State University\"\n", " iAnswer=int(raw_input(\"Enter your selection :\"))\n", " return iAnswer\n", "\n", "def geographyQuestion():\n", " print \"Geography Question\"\n", " print \"What is the state capitol of Florida?\"\n", " print \"1 \\t Pensecola\"\n", " print \"2 \\t Tallahassee\"\n", " print \"3 \\t Jacksonville\"\n", " print \"4 \\t Miami\"\n", " iAnswer=int(raw_input(\"Enter your selection :\"))\n", " return iAnswer\n", "def pause(inNum):\n", " iCurrentTime=0\n", " iElapsedTime=0\n", " \n", " iCurrentTime=int(round(time.time()*1000))\n", " \n", " while((iElapsedTime-iCurrentTime)