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author | Trupti Kini | 2017-03-07 09:55:18 +0600 |
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committer | Trupti Kini | 2017-03-07 09:55:18 +0600 |
commit | 856d4f871db9401d568629b88509a8aaf4c20626 (patch) | |
tree | 5dc225deca939bf8629e233e6433a2f9b5d17ae6 /Electronic_Communication_Systems_by_Roy_Blake/Chapter21.ipynb | |
parent | d05f35e060ec21522792779655b2d69057caa8fe (diff) | |
download | Python-Textbook-Companions-856d4f871db9401d568629b88509a8aaf4c20626.tar.gz Python-Textbook-Companions-856d4f871db9401d568629b88509a8aaf4c20626.tar.bz2 Python-Textbook-Companions-856d4f871db9401d568629b88509a8aaf4c20626.zip |
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A Electronic_Communication_Systems_by_Roy_Blake/Chapter1.ipynb
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A Electronic_Communication_Systems_by_Roy_Blake/Chapter13.ipynb
A Electronic_Communication_Systems_by_Roy_Blake/Chapter14.ipynb
A Electronic_Communication_Systems_by_Roy_Blake/Chapter15.ipynb
A Electronic_Communication_Systems_by_Roy_Blake/Chapter16.ipynb
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A Electronic_Communication_Systems_by_Roy_Blake/Chapter21.ipynb
A Electronic_Communication_Systems_by_Roy_Blake/Chapter22.ipynb
A Electronic_Communication_Systems_by_Roy_Blake/Chapter23.ipynb
A Electronic_Communication_Systems_by_Roy_Blake/Chapter24.ipynb
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A Engineering_Mechanics:_Statics_&_Engineering_Mechanics:_Dynamics_by_Meriam,_J._L.,_&_Kraige,_L._G./CHAPTER1.ipynb
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A Engineering_Mechanics_(Statics,_Dynamics),_by_Hibler_and_Gupta/Chapter_10_Moments_of_Inertia.ipynb
A Engineering_Mechanics_(Statics,_Dynamics),_by_Hibler_and_Gupta/Chapter_11__Virtual_Work.ipynb
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A Engineering_Mechanics_(Statics,_Dynamics),_by_Hibler_and_Gupta/Chapter_2_Force_Vectors.ipynb
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A Engineering_Mechanics_by_R.K_Bansal/chapter_1.ipynb
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A Engineering_Mechanics_by_R.K_Bansal/chapter_16.ipynb
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A Engineering_Mechanics_by_R.K_Bansal/chapter_5.ipynb
A Engineering_Mechanics_by_R.K_Bansal/chapter_6.ipynb
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A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter10_ljUjU8j.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter11_5r7Matr.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter12.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter1_QhYeq33.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter2_GK3uH9r.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter3_18OmDFC.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter4_fMX8RWT.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter5_2AAnLS8.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter6_lGPDUWp.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter7_Ie2FcUI.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter8_vyeGLD8.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/Chapter9_4YOTRPU.ipynb
A Introduction_to_Heat_Transfer_by_S._K._Som/screenshots/9.7_xRDyNJc.png
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A Strength_Of_Materials_by_S_S_Bhavikatti/chapter_10_pO7WExy.ipynb
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A Strength_Of_Materials_by_S_S_Bhavikatti/chapter_7_GmkvL5A.ipynb
A Strength_Of_Materials_by_S_S_Bhavikatti/chapter_8_BLulAvR.ipynb
A Strength_Of_Materials_by_S_S_Bhavikatti/chapter_9_YALeeEe.ipynb
A Strength_Of_Materials_by_S_S_Bhavikatti/screenshots/BMD_dLcLPep.JPG
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A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter1.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter10.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter11.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter12.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter13.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter14.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter15.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter16.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter17.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter18.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter19.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter4.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter5.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter6.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter7.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter8.ipynb
A The_Elements_of_Physical_Chemistry_by_S._Glasstone/Chapter9.ipynb
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A "sample_notebooks/Sushovan Jena/Chapter1.ipynb"
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diff --git a/Electronic_Communication_Systems_by_Roy_Blake/Chapter21.ipynb b/Electronic_Communication_Systems_by_Roy_Blake/Chapter21.ipynb new file mode 100644 index 00000000..59c92856 --- /dev/null +++ b/Electronic_Communication_Systems_by_Roy_Blake/Chapter21.ipynb @@ -0,0 +1,171 @@ +{ + "cells": [ + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "# Chapter 21 : Cellular Radio" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example 1 : pg 795" + ] + }, + { + "cell_type": "code", + "execution_count": 1, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Handoff time is 720.0 sec\n", + "Handoff time is 36.0 sec\n" + ] + } + ], + "source": [ + " \n", + "# page no 795\n", + "# prob no 21.1\n", + "#calculate the hand off time\n", + "#given\n", + "v=100.;#in km/hr\n", + "# first convert speed into m/sec\n", + "v1=(100.*10**3)/3600;#in km/sec\n", + "#calculations and results\n", + "#part a)\n", + "r=10.**4;#in m\n", + "t=(2*r)/v1;\n", + "print 'Handoff time is',t,'sec'\n", + "#part b)\n", + "r=500;#in m\n", + "t=(2*r)/v1;\n", + "print 'Handoff time is',t,'sec'" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example 2 : pg 807" + ] + }, + { + "cell_type": "code", + "execution_count": 2, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "a) The average traffic is 416.667 E\n", + "The peak traffic is 3333.333 E\n", + "b) The average traffic per cell is 3.472 E\n", + "The peak traffic per cell is 27.778 E\n" + ] + } + ], + "source": [ + " \n", + "# page no 807\n", + "# prob no 21.2\n", + "#calculate the average and peak traffic\n", + "#given\n", + "N = 12\n", + "m = 120.\n", + "a = 20000.\n", + "th = 30.#in min/day this means\n", + "H = 0.5\n", + "tp = 10.\n", + "#calculations and results\n", + "#part a)Calculation of the average and peak traffic in erlangs for the whole\n", + "#system\n", + "# The average traffic is\n", + "T = a * H / 24\n", + "print 'a) The average traffic is',round(T,3),'E'\n", + "# The peak traffic is\n", + "T1 = (a * tp) / 60\n", + "print 'The peak traffic is',round(T1,3),'E'\n", + "#part b)Calculation of the average and peak traffic in erlangs for one cell\n", + "# The average traffic per cell is\n", + "t = T / m\n", + "print 'b) The average traffic per cell is',round(t,3),'E'\n", + "# The peak traffic per cell is\n", + "t = T1 / m\n", + "print 'The peak traffic per cell is',round(t,3),'E'\n", + "# part c)\n", + "# For average traffic at 3.47E, the blocking probability is much less than 1%,\n", + "# since the average no of call is much less than the no of channels. \n", + "#However, the blocking probability increases to just over 5%" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example 3 : pg 816" + ] + }, + { + "cell_type": "code", + "execution_count": 3, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "The maximum distance between base and mobile is 36900.0 m\n" + ] + } + ], + "source": [ + " \n", + "# page no 816\n", + "# prob no 21.3\n", + "#calculate the max distance\n", + "#given\n", + "tg=123.*10**-6;\n", + "c=3.*10**8;\n", + "#calculations\n", + "#The maximum distance between base and mobile is\n", + "d=c*tg;\n", + "#results\n", + "print 'The maximum distance between base and mobile is',d,'m'" + ] + } + ], + "metadata": { + "kernelspec": { + "display_name": "Python 2", + "language": "python", + "name": "python2" + }, + "language_info": { + "codemirror_mode": { + "name": "ipython", + "version": 2 + }, + "file_extension": ".py", + "mimetype": "text/x-python", + "name": "python", + "nbconvert_exporter": "python", + "pygments_lexer": "ipython2", + "version": "2.7.11" + } + }, + "nbformat": 4, + "nbformat_minor": 0 +} |