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Diffstat (limited to 'Basic_Electronics_and_Linear_Circuits/ch1.ipynb')
-rw-r--r-- | Basic_Electronics_and_Linear_Circuits/ch1.ipynb | 177 |
1 files changed, 84 insertions, 93 deletions
diff --git a/Basic_Electronics_and_Linear_Circuits/ch1.ipynb b/Basic_Electronics_and_Linear_Circuits/ch1.ipynb index d4853315..6ff156a7 100644 --- a/Basic_Electronics_and_Linear_Circuits/ch1.ipynb +++ b/Basic_Electronics_and_Linear_Circuits/ch1.ipynb @@ -1,94 +1,85 @@ -{
- "metadata": {
- "name": "ch1"
- },
- "nbformat": 3,
- "nbformat_minor": 0,
- "worksheets": [
- {
- "cells": [
- {
- "cell_type": "heading",
- "level": 1,
- "metadata": {},
- "source": [
- "Chapter no. 1: Introduction To Electronics"
- ]
- },
- {
- "cell_type": "heading",
- "level": 2,
- "metadata": {},
- "source": [
- "Example 1.1 Page no.8"
- ]
- },
- {
- "cell_type": "code",
- "collapsed": false,
- "input": [
- "#Example 1.1\n",
- "# a resistor has a coloue band sequence : \n",
- "#yellow,voilet,orange and gold.\n",
- "#find the Range in which its value lies so as to satisfy manufacturer's Tolerances\n",
- "\n",
- "#Given\n",
- "#Colour Band Sequence: YELLOW, VIOLET, ORANGE, GOLD \n",
- "A=4 #NUMERICAL CODE FOR BAND YELLOW\n",
- "B=7 #NUMERICAL CODE FOR BAND VIOLET\n",
- "C=3 #NUMERICAL CODE FOR BAND ORANGE\n",
- "D=5 #TOLERANCE VALUE FOR BAND GOLD i.e. 5%\n",
- "\n",
- "#Resistor Value Calculation\n",
- "R=(A*10+B)*10**C\n",
- "#Tolerance Value Calulation\n",
- "T=D*R/100;\n",
- "R1=R-T;\n",
- "R2=R+T;\n",
- "\n",
- "# Results\n",
- "print \"Therefore thr resistance should be within the range \", R1*10**(-3) ,\"kohm\",\"and\", R2*10**(-3),\"kohm\""
- ],
- "language": "python",
- "metadata": {},
- "outputs": []
- },
- {
- "cell_type": "heading",
- "level": 3,
- "metadata": {},
- "source": [
- "Example 1.2 Page no.8"
- ]
- },
- {
- "cell_type": "code",
- "collapsed": false,
- "input": [
- "#Example 1.2\n",
- "#A resistoe has a colour band sequence : gray ,blue.gold and gold.\n",
- "#what is the Range in which its value must lie to satisfy manufacturer's Tolerances\n",
- "\n",
- "#Colour Band Sequence: GRAY, BLUE, GOLD, GOLD\n",
- "A=8 #NUMERICAL CODE FOR BAND GRAY\n",
- "B=6 #NUMERICAL CODE FOR BAND BLUE\n",
- "C=-1 #NUMERICAL CODE FOR BAND GOLD\n",
- "D=5 #TOLERANCE VALUE FOR BAND GOLD i.e. 5%\n",
- "#Resistor Value Calculation\n",
- "R=(A*10+B)*10**C\n",
- "#Tolerance Value Calulation\n",
- "T=D*R/100\n",
- "R1=R-T\n",
- "R2=R+T\n",
- "# Results \n",
- "print \"Range of Values of the Resistor is between \",R1,\"ohm\",\"and\",R2,\"ohm\""
- ],
- "language": "python",
- "metadata": {},
- "outputs": []
- }
- ],
- "metadata": {}
- }
- ]
+{ + "metadata": { + "name": "", + "signature": "sha256:d40864745b0958ff90d45e29ecc4874d2fd0d20b38ed09535ff46977537fd224" + }, + "nbformat": 3, + "nbformat_minor": 0, + "worksheets": [ + { + "cells": [ + { + "cell_type": "heading", + "level": 1, + "metadata": {}, + "source": [ + "Chapter no. 1: Introduction To Electronics" + ] + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example 1.1 Page no.8" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "\n", + "A=4 #NUMERICAL CODE FOR BAND YELLOW\n", + "B=7 #NUMERICAL CODE FOR BAND VIOLET\n", + "C=3 #NUMERICAL CODE FOR BAND ORANGE\n", + "D=5 #TOLERANCE VALUE FOR BAND GOLD i.e. 5%\n", + "\n", + "#Resistor Value Calculation\n", + "R=(A*10+B)*10**C\n", + "#Tolerance Value Calulation\n", + "T=D*R/100;\n", + "R1=R-T;\n", + "R2=R+T;\n", + "\n", + "# Results\n", + "print \"Therefore thr resistance should be within the range \", R1*10**(-3) ,\"kohm\",\"and\", R2*10**(-3),\"kohm\"" + ], + "language": "python", + "metadata": {}, + "outputs": [] + }, + { + "cell_type": "heading", + "level": 3, + "metadata": {}, + "source": [ + "Example 1.2 Page no.8" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "\n", + "A=8 #NUMERICAL CODE FOR BAND GRAY\n", + "B=6 #NUMERICAL CODE FOR BAND BLUE\n", + "C=-1 #NUMERICAL CODE FOR BAND GOLD\n", + "D=5 #TOLERANCE VALUE FOR BAND GOLD i.e. 5%\n", + "#Resistor Value Calculation\n", + "R=(A*10+B)*10**C\n", + "#Tolerance Value Calulation\n", + "T=D*R/100\n", + "R1=R-T\n", + "R2=R+T\n", + "# Results \n", + "print \"Range of Values of the Resistor is between \",R1,\"ohm\",\"and\",R2,\"ohm\"" + ], + "language": "python", + "metadata": {}, + "outputs": [] + } + ], + "metadata": {} + } + ] }
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