├── .gitignore ├── 01-instalasi matplotlib └── Main.py ├── 02-pendahuluan pyplot └── Main.py ├── 03-Warna dan Marker └── Main.py ├── 04-Set Properties └── Main.py ├── 05-Axis └── Main.py ├── 06-Label dan Title └── Main.py ├── 07-Legend └── main.py ├── 08-Text └── main.py ├── 09-Ticks └── main.py ├── 10-Spines └── main.py ├── LICENSE.md └── README.md /.gitignore: -------------------------------------------------------------------------------- 1 | # Byte-compiled / optimized / DLL files 2 | __pycache__/ 3 | *.py[cod] 4 | *$py.class 5 | 6 | # C extensions 7 | *.so 8 | 9 | # Distribution / packaging 10 | .Python 11 | env/ 12 | build/ 13 | develop-eggs/ 14 | dist/ 15 | downloads/ 16 | eggs/ 17 | .eggs/ 18 | lib/ 19 | lib64/ 20 | parts/ 21 | sdist/ 22 | var/ 23 | *.egg-info/ 24 | .installed.cfg 25 | *.egg 26 | 27 | # PyInstaller 28 | # Usually these files are written by a python script from a template 29 | # before PyInstaller builds the exe, so as to inject date/other infos into it. 30 | *.manifest 31 | *.spec 32 | 33 | # Installer logs 34 | pip-log.txt 35 | pip-delete-this-directory.txt 36 | 37 | # Unit test / coverage reports 38 | htmlcov/ 39 | .tox/ 40 | .coverage 41 | .coverage.* 42 | .cache 43 | nosetests.xml 44 | coverage.xml 45 | *,cover 46 | 47 | # Translations 48 | *.mo 49 | *.pot 50 | 51 | # Django stuff: 52 | *.log 53 | 54 | # Sphinx documentation 55 | docs/_build/ 56 | 57 | # PyBuilder 58 | target/ 59 | -------------------------------------------------------------------------------- /01-instalasi matplotlib/Main.py: -------------------------------------------------------------------------------- 1 | import numpy as np 2 | import matplotlib.pyplot as plt 3 | 4 | # kita buat lingkaran 5 | PI = np.pi 6 | sudut = np.linspace(0,2*PI,100) 7 | radius = 5; 8 | 9 | x = radius * np.cos(sudut) 10 | y = radius * np.sin(sudut) 11 | 12 | # inisialisasi plot 13 | plt.plot(x,y) 14 | 15 | # tampilkan 16 | plt.show() -------------------------------------------------------------------------------- /02-pendahuluan pyplot/Main.py: -------------------------------------------------------------------------------- 1 | import numpy as np 2 | import matplotlib.pyplot as plt 3 | 4 | """ 5 | 1. Membuat data 6 | 2. Membuat plot 7 | 3. Menampilkan plot 8 | """ 9 | 10 | # 1. Membuat data 11 | x = np.array([1,2,3,4,5]) 12 | y = np.array([1,4,9,16,25]) 13 | y2 = np.array([1,16,81,256,625]) 14 | 15 | # 2. Membuat plot 16 | plt.plot(x,y) 17 | plt.plot(x,y2) 18 | 19 | # 3. Menampilkan plot 20 | plt.show() 21 | -------------------------------------------------------------------------------- /03-Warna dan Marker/Main.py: -------------------------------------------------------------------------------- 1 | import numpy as np 2 | import matplotlib.pyplot as plt 3 | 4 | """ 5 | 1. Membuat data 6 | 2. Membuat plot 7 | 3. Menampilkan plot 8 | """ 9 | 10 | # 1. Membuat data (sin(2wt + theta)) 11 | # camel case 12 | def sinusGenerator(amplitudo,frekuensi,tAkhir,theta): 13 | t = np.arange(0,tAkhir,0.1) 14 | y = amplitudo * np.sin(2*frekuensi*t + np.deg2rad(theta)) 15 | return t,y 16 | 17 | # 2. Membuat plot 18 | t1,y1 = sinusGenerator(1,1,4,0) 19 | plt.plot(t1,y1) 20 | 21 | t2,y2 = sinusGenerator(1,1,4,30) 22 | plt.plot(t2,y2, 'r') 23 | 24 | t3,y3 = sinusGenerator(1,1,4,60) 25 | plt.plot(t3,y3, 'b--') 26 | 27 | t4,y4 = sinusGenerator(1,1,4,90) 28 | plt.plot(t4,y4, 'c-o') 29 | 30 | 31 | # 3. Menampilkan plot 32 | plt.show() 33 | 34 | # "." point 35 | # "," pixel 36 | # "o" circle 37 | # "v" triangle_down 38 | # "^" triangle_up 39 | # "<" triangle_left 40 | # ">" triangle_right 41 | # "1" tri_down 42 | # "2" tri_up 43 | # "3" tri_left 44 | # "4" tri_right 45 | # "8" octagon 46 | # "s" square 47 | # "p" pentagon 48 | # "P" plus (filled) 49 | # "*" star 50 | # "h" hexagon1 51 | # "H" hexagon2 52 | # "+" plus 53 | # "x" x 54 | # "X" x (filled) 55 | # "D" diamond 56 | # "d" thin_diamond 57 | # "|" vline 58 | # "_" hline -------------------------------------------------------------------------------- /04-Set Properties/Main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | # membuat data 5 | def sinusGenerator(amplitudo,frekuensi,tAkhir,theta): 6 | t = np.arange(0,tAkhir,0.1) 7 | y = amplitudo * np.sin(2*frekuensi*t + np.deg2rad(theta)) 8 | return t,y 9 | 10 | t1,y1 = sinusGenerator(1,1,4,0) 11 | t2,y2 = sinusGenerator(1,1,4,90) 12 | t3,y3 = sinusGenerator(1,1,4,180) 13 | 14 | # membuat plot 15 | dataPlot1 = plt.plot(t1,y1) 16 | dataPlot2 = plt.plot(t2,y2) 17 | dataPlot3 = plt.plot(t3,y3) 18 | 19 | 20 | # setting properties 21 | plt.setp(dataPlot1,color='r', linestyle='-', linewidth=0.75) 22 | plt.setp(dataPlot2,color='b', linestyle='-.', linewidth=4) 23 | plt.setp(dataPlot3,color='g', linestyle='--', linewidth=1.25) 24 | 25 | # menampilkan plot 26 | plt.show() -------------------------------------------------------------------------------- /05-Axis/Main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | # membuat data 5 | def sinusGenerator(amplitudo,frekuensi,tAkhir,theta): 6 | t = np.arange(0,tAkhir,0.1) 7 | y = amplitudo * np.sin(2*frekuensi*t + np.deg2rad(theta)) 8 | return t,y 9 | 10 | t,y = sinusGenerator(1,1,4,0) 11 | 12 | 13 | # membuat plot 14 | plt.plot(t,y) 15 | 16 | # setting axis, minimum sama maximum 17 | plt.axis([0,4,-2,2]) 18 | 19 | # menampilkan 20 | plt.show() -------------------------------------------------------------------------------- /06-Label dan Title/Main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | # membuat data 5 | 6 | def sinusGenerator(amplitudo,frekuensi,tAkhir,theta): 7 | t = np.arange(0,tAkhir,0.1) 8 | y = amplitudo * np.sin(2*frekuensi*t + np.deg2rad(theta)) 9 | return t,y 10 | 11 | amplitudo = 1 12 | frekuensi = 1 13 | theta = 0 14 | tAkhir = 4 15 | 16 | t,y = sinusGenerator(amplitudo,frekuensi,tAkhir,theta) 17 | 18 | # membuat plot 19 | 20 | judul = 'Grafik Sinusoidal\n' 21 | rumus = r'$ \mathcal{Y} = A.sin(2 \omega t + \theta)$' + '\n' 22 | parameter1 = r'$ A = $' + str(amplitudo) + ' cm, ' 23 | parameter2 = r'$ \omega = $' + str(frekuensi) + r'$ \mathit{Hz}$' +', ' 24 | parameter3 = r'$ \theta = $' + str(theta) + r'$^{o} $' 25 | 26 | plt.plot(t,y) 27 | 28 | plt.title(judul + rumus + parameter1 + parameter2 + parameter3) 29 | 30 | plt.xlabel('waktu(detik)') 31 | plt.ylabel('magnituda(cm)') 32 | 33 | 34 | # menampilkan plot 35 | 36 | plt.show() -------------------------------------------------------------------------------- /07-Legend/main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | # Membuat Data 5 | def sinusGenerator(amplitudo,frekuensi,tAkhir,theta): 6 | t = np.arange(0,tAkhir,0.1) 7 | y = amplitudo * np.sin(2*frekuensi*t + np.deg2rad(theta)) 8 | return t,y 9 | 10 | t1,y1 = sinusGenerator(1,1,4,0) 11 | t2,y2 = sinusGenerator(1,1,4,90) 12 | 13 | # membuat plot 14 | 15 | # tipe pertama 16 | # plt.plot(t1,y1, label="sin(0)") 17 | # plt.plot(t2,y2, label="sin(90)") 18 | # plt.legend() 19 | 20 | # tipe kedua 21 | # plt.plot(t1,y1, label="sin(0)") 22 | # plt.plot(t2,y2, label="sin(90)") 23 | # plt.legend(loc="upper center") 24 | 25 | # tipe ketiga 26 | # plt.plot(t1,y1, label="sin(0)") 27 | # plt.plot(t2,y2, label="sin(90)") 28 | # plt.legend(loc="upper center", bbox_to_anchor=(0.5,-0.05)) 29 | 30 | # tipe keempat 31 | plt.figure(1) 32 | ax = plt.subplot(111) 33 | plt.plot(t1,y1, label="sin(0)") 34 | plt.plot(t2,y2, label="sin(90)") 35 | box = ax.get_position() 36 | ax.set_position([box.x0, box.y0, box.width*0.7, box.height]) 37 | plt.legend(loc="upper center", bbox_to_anchor=(1.2,1)) 38 | 39 | # tampilkan plot 40 | 41 | plt.show() 42 | 43 | 44 | 45 | 46 | 47 | 48 | 49 | 50 | 51 | 52 | 53 | 54 | 55 | 56 | -------------------------------------------------------------------------------- /08-Text/main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | 5 | # Membuat Data 6 | def sinusGenerator(amplitudo,frekuensi,waktu,theta): 7 | t = np.arange(0,waktu,0.05) 8 | y = amplitudo * np.sin(2 * frekuensi * t + np.deg2rad(theta)) 9 | return t,y 10 | 11 | t,y = sinusGenerator(1,1,4,0) 12 | 13 | plt.plot(t,y) 14 | plt.text(2,0.5, r'$ y = \mathcal{A}.sin(2 \omega t)$') 15 | plt.text(2,0.4, r'$ \mathcal{A} = 1 cm, \omega = 1 Hz$') 16 | 17 | plt.show() -------------------------------------------------------------------------------- /09-Ticks/main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | # membuat data 5 | sudut = np.arange(0,360,1) 6 | y = np.sin(np.deg2rad(sudut)) 7 | 8 | # buat plot 9 | 10 | plt.plot(sudut,y) 11 | plt.ylabel("magnituda") 12 | plt.xlabel("sudut") 13 | 14 | plt.yticks([-1,0,1]) 15 | plt.xticks( 16 | [0 ,90 ,180 ,270 ,360], 17 | [r'${0}^o$',r'${90}^o$',r'${180}^o$',r'${270}^o$',r'${360}^o$',]) 18 | 19 | # tampilkan plot 20 | 21 | plt.show() -------------------------------------------------------------------------------- /10-Spines/main.py: -------------------------------------------------------------------------------- 1 | import matplotlib.pyplot as plt 2 | import numpy as np 3 | 4 | # membuat data 5 | sudut = np.arange(0,360,1) 6 | y = np.sin(np.deg2rad(sudut)) 7 | 8 | 9 | # membuat plot 10 | 11 | plt.plot(sudut,y) 12 | plt.title("grafik sinusoidal") 13 | plt.text(190,1,"magnituda") 14 | plt.text(360,0.1,"sudut") 15 | plt.yticks([-1,-0.5,0,0.5,1]) 16 | plt.xticks([0,90,180,270,360], 17 | [r'${0}^o$',r'${90}^o$',r'${180}^o$',r'${270}^o$',r'${360}^o$']) 18 | 19 | ax = plt.gca() 20 | ax.spines['left'].set_position(('data',180)) 21 | ax.spines['bottom'].set_position(('data',0)) 22 | ax.spines['right'].set_color('none') 23 | ax.spines['top'].set_color('none') 24 | 25 | 26 | 27 | # tampilkan 28 | plt.show() -------------------------------------------------------------------------------- /LICENSE.md: -------------------------------------------------------------------------------- 1 | 2 | Apache License 3 | Version 2.0, January 2004 4 | http://www.apache.org/licenses/ 5 | 6 | TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION 7 | 8 | 1. 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