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import numpy as ߦИNⵙИNᑎᙏߦ人ⵙ
import plotly.graph_objects as 𖧷8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ
from math import *
import mpmath
from ipywidgets import interact,widgets,Text,Layout
from plotly.subplots import make_subplots
OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ=widgets.Text(value='(1-cos(((4)/2)*x))/2',layout=widgets.Layout(width='100%'),description='⚪ᗩ⚪ᙁ⚪ᑎ⚪ᙏ⚪ᴥ⚪Ⓞ⚪ꗳ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ꗳ⚪Ⓞ⚪ᴥ⚪ᙏ⚪ᑎ⚪ᙁ⚪ᗩ⚪')
𖧷𖧷ИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᔓᔕ𖧷ᗩᴥ𖧷ⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ=widgets.FloatSlider(min=-4*(4*atan(1)),max=4*(4*atan(1)),value=-2*(4*atan(1)),step=(4*atan(1))/4,layout=widgets.Layout(width='100%'),readout_format='.256f',description='⚪ᙏ⚪Ⓞ⚪ᴥ⚪ꗳ⚪◯⚪ᗱᗴ⚪ᕤᕦ⚪ИN⚪ᗩ⚪ᴥ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ᴥ⚪ᗩ⚪ИN⚪ᕤᕦ⚪ᗱᗴ⚪◯⚪ꗳ⚪ᴥ⚪Ⓞ⚪ᙏ⚪')
ИNᗱᗴⵔᗱᗴᕤᕦИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᗱᗴИNᗝⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ=widgets.FloatSlider(min=-4*(4*atan(1)),max=4*(4*atan(1)),value=2*(4*atan(1)),step=(4*atan(1))/4,layout=widgets.Layout(width='100%'),readout_format='.256f',description='⚪Ⓞ⚪✤⚪◯⚪ᗱᗴ⚪ᕤᕦ⚪ИN⚪ᗩ⚪ᴥ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ᴥ⚪ᗩ⚪ИN⚪ᕤᕦ⚪ᗱᗴ⚪◯⚪✤⚪Ⓞ⚪')
Oߦⵔ人𖧷ꖴ𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵔߦOᗯᗱᗴᴥⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ=widgets.IntSlider(min=1,max=16,value=8,layout=widgets.Layout(width='100%'),readout_format='.256f',description='⚪ᴥ⚪ᗱᗴ⚪ᗯ⚪Ⓞ⚪ߦ⚪◯⚪ᴥ⚪ᗱᗴ⚪⚭⚪ᙏ⚪ᑎ⚪ИN⚪◯⚪✤⚪ИN⚪ꖴ⚪Ⓞ⚪ߦ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ߦ⚪Ⓞ⚪ꖴ⚪ИN⚪✤⚪◯⚪ИN⚪ᑎ⚪ᙏ⚪⚭⚪ᗱᗴ⚪ᴥ⚪◯⚪ߦ⚪Ⓞ⚪ᗯ⚪ᗱᗴ⚪ᴥ⚪')
·88·=widgets.FloatSlider(min=-2,max=2,value=1,step=1/256,layout=widgets.Layout(width='100%'),readout_format='.256f',description='⚪·⚪◯⚪ᗱᗴ⚪ᙁ⚪⚭⚪ᗩ⚪ꖴ⚪ᴥ⚪ᗩ⚪ᗯ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ᗯ⚪ᗩ⚪ᴥ⚪ꖴ⚪ᗩ⚪⚭⚪ᙁ⚪ᗱᗴ⚪◯⚪·⚪')
𑫰88𑫰=widgets.FloatSlider(min=-2,max=2,value=1,step=1/256,layout=widgets.Layout(width='100%'),readout_format='.256f',description='⚪꞉⚪◯⚪ᗱᗴ⚪ᙁ⚪⚭⚪ᗩ⚪ꖴ⚪ᴥ⚪ᗩ⚪ᗯ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ᗯ⚪ᗩ⚪ᴥ⚪ꖴ⚪ᗩ⚪⚭⚪ᙁ⚪ᗱᗴ⚪◯⚪꞉⚪')
def ߦߦ(x):return max(min(1,x),-1)
def 𖧷ߦOᑐᑕⵙⵔⵙⵔⵙᑐᑕOᙏߦᑎ𖧷ᗱᗴⵙ(OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ,x,·88·,𑫰88𑫰):
8OᗯⵔИNOꖴ𖧷ᑐᑕИNᑎꗳⵙⵔⵙⵔⵙꗳᑎИNᑐᑕ𖧷ꖴOИNⵔᗯOᑐᑕᗩ8ᑎᙁᗩᴥ人ⵙ={ИNⵔИNOꖴ𖧷ᑐᑕИNᑎꗳⵙⵔⵙⵔⵙꗳᑎИNᑐᑕ𖧷ꖴOИNⵔИNᗩᙏᗱᗴᔓᔕⵙ:eval(f'lambda*ⵙᔓᔕ𖧷ИNᗱᗴᙏᑎᕤᕦᴥᗩⵙⵔⵙⵔⵙᗩᴥᕤᕦᑎᙏᗱᗴИN𖧷ᔓᔕⵙ:mpmath.{ⵙᔓᔕᗱᗴᙏᗩИNⵔИNOꖴ𖧷ᑐᑕИNᑎꗳⵙⵔⵙⵔⵙꗳᑎИNᑐᑕ𖧷ꖴOИNⵔИNᗩᙏᗱᗴᔓᔕⵙ}(*ⵙᔓᔕ𖧷ИNᗱᗴᙏᑎᕤᕦᴥᗩⵙⵔⵙⵔⵙᗩᴥᕤᕦᑎᙏᗱᗴИN𖧷ᔓᔕⵙ)') for ИNⵔИNOꖴ𖧷ᑐᑕИNᑎꗳⵙⵔⵙⵔⵙꗳᑎИNᑐᑕ𖧷ꖴOИNⵔИNᗩᙏᗱᗴᔓᔕⵙ in dir(mpmath)}
return float(eval(OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ,{'x':x,'ⵙ·ⵔᗱᗴᙁ8ᗩꖴᴥᗩᗯⵙⵔⵙⵔⵙᗯᗩᴥꖴᗩ8ᙁᗱᗴⵔ·ⵙ':·88·,'ⵙ𑫰ⵔᗱᗴᙁ8ᗩꖴᴥᗩᗯⵙⵔⵙⵔⵙᗯᗩᴥꖴᗩ8ᙁᗱᗴⵔ𑫰ⵙ':𑫰88𑫰,'ⵙߦᙏᗩᙁᑐᑕⵙⵔⵙⵔⵙᑐᑕᙁᗩᙏߦⵙ':ߦߦ,**8OᗯⵔИNOꖴ𖧷ᑐᑕИNᑎꗳⵙⵔⵙⵔⵙꗳᑎИNᑐᑕ𖧷ꖴOИNⵔᗯOᑐᑕᗩ8ᑎᙁᗩᴥ人ⵙ}))
def 𖧷OᙁߦⵙⵔⵙⵔⵙߦᙁO𖧷ⵙ(OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ='1.4795/ⵙ𑫰ⵔᗱᗴᙁ8ᗩꖴᴥᗩᗯⵙⵔⵙⵔⵙᗯᗩᴥꖴᗩ8ᙁᗱᗴⵔ𑫰ⵙ-((x)/(4*atan(1)*ⵙ·ⵔᗱᗴᙁ8ᗩꖴᴥᗩᗯⵙⵔⵙⵔⵙᗯᗩᴥꖴᗩ8ᙁᗱᗴⵔ·ⵙ/2*ⵙ𑫰ⵔᗱᗴᙁ8ᗩꖴᴥᗩᗯⵙⵔⵙⵔⵙᗯᗩᴥꖴᗩ8ᙁᗱᗴⵔ𑫰ⵙ))*1.4795',𖧷𖧷ИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᔓᔕ𖧷ᗩᴥ𖧷ⵙ=-2*(4*atan(1)),ИNᗱᗴⵔᗱᗴᕤᕦИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᗱᗴИNᗝⵙ=2*(4*atan(1)),Oߦⵔ人𖧷ꖴ𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵔߦOᗯᗱᗴᴥⵙ=8,·88·=1,𑫰88𑫰=1):
𖧷𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵙ=1+2**Oߦⵔ人𖧷ꖴ𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵔߦOᗯᗱᗴᴥⵙ
=ߦИNⵙИNᑎᙏߦ人ⵙ.linspace(𖧷𖧷ИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᔓᔕ𖧷ᗩᴥ𖧷ⵙ,ИNᗱᗴⵔᗱᗴᕤᕦИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᗱᗴИNᗝⵙ,𖧷𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵙ)
ߦ𐊌𐊌ߦ=ߦИNⵙИNᑎᙏߦ人ⵙ.array([𖧷ߦOᑐᑕⵙⵔⵙⵔⵙᑐᑕOᙏߦᑎ𖧷ᗱᗴⵙ(OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ,ߦ𐊌𐊌ߦ,·88·,𑫰88𑫰) for ߦ𐊌𐊌ߦ in ])
𖧷𖧷𖧷𖧷=ߦИNⵙИNᑎᙏߦ人ⵙ.cumsum(ߦ𐊌𐊌ߦ)*([1]-[0]) if 𖧷𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵙ>1 else ߦИNⵙИNᑎᙏߦ人ⵙ.array([0])
𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ=ߦИNⵙИNᑎᙏߦ人ⵙ.cumsum(ߦИNⵙИNᑎᙏߦ人ⵙ.cos(𖧷𖧷𖧷𖧷))*([1]-[0]) if 𖧷𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵙ>1 else ߦИNⵙИNᑎᙏߦ人ⵙ.array([0])
𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ=ߦИNⵙИNᑎᙏߦ人ⵙ.cumsum(ߦИNⵙИNᑎᙏߦ人ⵙ.sin(𖧷𖧷𖧷𖧷))*([1]-[0]) if 𖧷𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵙ>1 else ߦИNⵙИNᑎᙏߦ人ⵙ.array([0])
if 𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ[0] !=0 or 𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ[0] !=0:
𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ=ߦИNⵙИNᑎᙏߦ人ⵙ.insert(𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ,0,0)
𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ=ߦИNⵙИNᑎᙏߦ人ⵙ.insert(𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ,0,0)
else:
𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ=𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ
𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ=𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵔⵙ
=[𖧷ߦOᑐᑕⵙⵔⵙⵔⵙᑐᑕOᙏߦᑎ𖧷ᗱᗴⵙ(OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ,ߦ𐊌𐊌ߦ,·88·,𑫰88𑫰) for ߦ𐊌𐊌ߦ in ]
ИNᗩᴥⵔꕤⵔᙏᑎᙏꖴИNꖴᙏⵙⵔⵙⵔⵙᙏꖴИNꖴᙏᑎᙏⵔꕤⵔᴥᗩИNᕤᕦᗱᗴⵙ=min(map(min,[𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ,]))
ИNᗩᴥⵔ人ⵔᙏᑎᙏꖴИNꖴᙏⵙⵔⵙⵔⵙᙏꖴИNꖴᙏᑎᙏⵔ人ⵔᴥᗩИNᕤᕦᗱᗴⵙ=min(map(min,[𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ,]))
ИNᗩᴥⵔꕤⵔᙏᑎᙏꖴꕤᗩᙏⵙⵔⵙⵔⵙᙏᗩꕤꖴᙏᑎᙏⵔꕤⵔᴥᗩИNᕤᕦᗱᗴⵙ=max(map(max,[𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ,]))
ИNᗩᴥⵔ人ⵔᙏᑎᙏꖴꕤᗩᙏⵙⵔⵙⵔⵙᙏᗩꕤꖴᙏᑎᙏⵔ人ⵔᴥᗩИNᕤᕦᗱᗴⵙ=max(map(max,[𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ,]))
··=𖧷8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ.Figure()
··.add_trace(𖧷8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ.Scatter(x=𖧷ИNꖴᗝᴥOᑐᑕⵔꕤⵙⵔⵙⵔⵙꕤⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ,y=𖧷ИNꖴᗝᴥOᑐᑕⵔ人ⵙⵔⵙⵔⵙ人ⵔᑐᑕOᴥᗝꖴИNᗩ𖧷ᗱᗴᔓᔕⵙ,mode='lines',line=dict(color='#CECECE'),name='',hovertemplate='%{x:.256f}' + '<br>人 %{y:.256f}'))
··.update_layout(autosize=True,margin=dict(l=0,r=0,b=0,t=0,pad=0),
height=512,
xaxis=dict(scaleanchor='y',scaleratio=1,gridcolor='#CECECE',zeroline=True,zerolinecolor='#CECECE',tickfont=dict(color='#9C9C9C',size=16)),
yaxis=dict(gridcolor='#CECECE',zeroline=True,zerolinecolor='#CECECE',tickfont=dict(color='#9C9C9C',size=16)),
hoverlabel=dict(bgcolor="#FFFFFF",font_color='#9C9C9C',bordercolor="#CECECE",font_size=16),plot_bgcolor='#FFFFFF'
)
··.update_xaxes(range=[ИNᗩᴥⵔꕤⵔᙏᑎᙏꖴИNꖴᙏⵙⵔⵙⵔⵙᙏꖴИNꖴᙏᑎᙏⵔꕤⵔᴥᗩИNᕤᕦᗱᗴⵙ,ИNᗩᴥⵔꕤⵔᙏᑎᙏꖴꕤᗩᙏⵙⵔⵙⵔⵙᙏᗩꕤꖴᙏᑎᙏⵔꕤⵔᴥᗩИNᕤᕦᗱᗴⵙ])
··.update_yaxes(range=[ИNᗩᴥⵔ人ⵔᙏᑎᙏꖴИNꖴᙏⵙⵔⵙⵔⵙᙏꖴИNꖴᙏᑎᙏⵔ人ⵔᴥᗩИNᕤᕦᗱᗴⵙ,ИNᗩᴥⵔ人ⵔᙏᑎᙏꖴꕤᗩᙏⵙⵔⵙⵔⵙᙏᗩꕤꖴᙏᑎᙏⵔ人ⵔᴥᗩИNᕤᕦᗱᗴⵙ])
··.show()
𑫰𑫰=𖧷8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ.Figure()
𑫰𑫰.add_trace(𖧷8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ.Scatter(x=,y=,mode='lines',line=dict(color='#CECECE'),name='',hovertemplate='%{x:.256f}' + '<br>人 %{y:.256f}'))
𑫰𑫰.update_layout(autosize=True,margin=dict(l=0,r=0,b=0,t=0,pad=0),
height=512,
xaxis=dict(scaleanchor='y',scaleratio=1,gridcolor='#CECECE',zeroline=True,zerolinecolor='#CECECE',tickfont=dict(color='#9C9C9C',size=16)),
yaxis=dict(gridcolor='#CECECE',zeroline=True,zerolinecolor='#CECECE',tickfont=dict(color='#9C9C9C',size=16)),
hoverlabel=dict(bgcolor="#FFFFFF",font_color='#9C9C9C',bordercolor="#CECECE",font_size=16),plot_bgcolor='#FFFFFF'
)
𑫰𑫰.update_xaxes(range=[ИNᗩᴥⵔꕤⵔᙏᑎᙏꖴИNꖴᙏⵙⵔⵙⵔⵙᙏꖴИNꖴᙏᑎᙏⵔꕤⵔᴥᗩИNᕤᕦᗱᗴⵙ,ИNᗩᴥⵔꕤⵔᙏᑎᙏꖴꕤᗩᙏⵙⵔⵙⵔⵙᙏᗩꕤꖴᙏᑎᙏⵔꕤⵔᴥᗩИNᕤᕦᗱᗴⵙ])
𑫰𑫰.update_yaxes(range=[ИNᗩᴥⵔ人ⵔᙏᑎᙏꖴИNꖴᙏⵙⵔⵙⵔⵙᙏꖴИNꖴᙏᑎᙏⵔ人ⵔᴥᗩИNᕤᕦᗱᗴⵙ,ИNᗩᴥⵔ人ⵔᙏᑎᙏꖴꕤᗩᙏⵙⵔⵙⵔⵙᙏᗩꕤꖴᙏᑎᙏⵔ人ⵔᴥᗩИNᕤᕦᗱᗴⵙ])
𑫰𑫰.show()
interact(𖧷OᙁߦⵙⵔⵙⵔⵙߦᙁO𖧷ⵙ,OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ=OꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ,𖧷𖧷ИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᔓᔕ𖧷ᗩᴥ𖧷ⵙ=𖧷𖧷ИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᔓᔕ𖧷ᗩᴥ𖧷ⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ,ИNᗱᗴⵔᗱᗴᕤᕦИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᗱᗴИNᗝⵙ=ИNᗱᗴⵔᗱᗴᕤᕦИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᗱᗴИNᗝⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ,Oߦⵔ人𖧷ꖴ𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵔߦOᗯᗱᗴᴥⵙ=Oߦⵔ人𖧷ꖴ𖧷ИNᗩᑎꄍⵔ𖧷ИNꖴOߦⵔⵙⵔⵙߦOꖴИN𖧷ⵔꄍᑎᗩИN𖧷ꖴ𖧷人ⵔߦOᗯᗱᗴᴥⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ,·88·=·88·,𑫰88𑫰=𑫰88𑫰);