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Tweets movement description and chart display
2022-06-13 01:23:00 【Durian is not delicious】
Chart 
Movement description
linear
Linear uniform motion effect
Sine.easeIn
The slow motion of a sinusoid (sin(t))/ from 0 Start to accelerate the jog , That is, slow first, then fast
Sine.easeOut
The slow motion of a sinusoid (sin(t))/ Slow down to 0 Slow motion of , That is, fast first, then slow
Sine.easeInOut
The slow motion of a sinusoid (sin(t))/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Quad.easeIn
Second power slow motion (t^2)/ from 0 Start to accelerate the jog , That is, slow first, then fast
Quad.easeOut
Second power slow motion (t^2)/ Slow down to 0 Slow motion of , That is, fast first, then slow
Quad.easeInOut
Second power slow motion (t^2)/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Cubic.easeIn
Third power slow motion (t^3)/ from 0 Start to accelerate the jog , That is, slow first, then fast
Cubic.easeOut
Third power slow motion (t^3)/ Slow down to 0 Slow motion of , That is, fast first, then slow
Cubic.easeInOut
Third power slow motion (t^3)/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Quart.easeIn
Fourth power slow motion (t^4)/ from 0 Start to accelerate the jog , That is, slow first, then fast
Quart.easeOut
Fourth power slow motion (t^4)/ Slow down to 0 Slow motion of , That is, fast first, then slow
Quart.easeInOut
Fourth power slow motion (t^4)/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Quint.easeIn
Slow motion of the fifth power (t^5)/ from 0 Start to accelerate the jog , That is, slow first, then fast
Quint.easeOut
Slow motion of the fifth power (t^5)/ Slow down to 0 Slow motion of , That is, fast first, then slow
Quint.easeInOut
Slow motion of the fifth power (t^5)/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Expo.easeIn
The slow motion of the exponential curve (2^t)/ from 0 Start to accelerate the jog , That is, slow first, then fast
Expo.easeOut
The slow motion of the exponential curve (2^t)/ Slow down to 0 Slow motion of , That is, fast first, then slow
Expo.easeInOut
The slow motion of the exponential curve (2^t)/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Circ.easeIn
Slow motion of circular curve (sqrt(1-t^2))/ from 0 Start to accelerate the jog , That is, slow first, then fast
Circ.easeOut
Slow motion of circular curve (sqrt(1-t^2))/ Slow down to 0 Slow motion of , That is, fast first, then slow
Circ.easeInOut
Slow motion of circular curve (sqrt(1-t^2))/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Back.easeIn
Out of range cubic jog ((s+1)*t^3 – s*t^2)/ from 0 Start to accelerate the jog , That is, slow first, then fast
Back.easeOut
Out of range cubic jog ((s+1)*t^3 – s*t^2)/ Slow down to 0 Slow motion of , That is, fast first, then slow
Back.easeInOut
Out of range cubic jog ((s+1)*t^3 – s*t^2)/ The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Elastic.easeIn
The exponential decay of the sinusoid slows / from 0 Start to accelerate the jog , That is, slow first, then fast
Elastic.easeOut
The exponential decay of the sinusoid slows / Slow down to 0 Slow motion of , That is, fast first, then slow
Elastic.easeInOut
The exponential decay of the sinusoid slows / The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
Bounce.easeIn
The rebound of exponential decay slows down / from 0 Start to accelerate the jog , That is, slow first, then fast
Bounce.easeOut
The rebound of exponential decay slows down / Slow down to 0 Slow motion of , That is, fast first, then slow
Bounce.easeInOut
The rebound of exponential decay slows down / The first half from 0 Start accelerating , The second half decelerates to 0 Slow motion of
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