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-rw-r--r--FSF-2020/approximations-and-optimizations/Critical Points/theorem.py14
1 files changed, 7 insertions, 7 deletions
diff --git a/FSF-2020/approximations-and-optimizations/Critical Points/theorem.py b/FSF-2020/approximations-and-optimizations/Critical Points/theorem.py
index 6889a52..7c82aa9 100644
--- a/FSF-2020/approximations-and-optimizations/Critical Points/theorem.py
+++ b/FSF-2020/approximations-and-optimizations/Critical Points/theorem.py
@@ -11,8 +11,8 @@ class TheoremAnimation(ThreeDScene):
u,
v,
u**2+v**2
- ]),v_min=-1,v_max=1,u_min=-1,u_max=1,checkerboard_colors=[TEAL_E],
- resolution=(20, 20)).scale(1)
+ ]),v_min = -1, v_max = 1, u_min = -1, u_max = 1, checkerboard_colors = [TEAL_E],
+ resolution = (20, 20)).scale(1)
#----parabola: -x**2-y**2
parabola2 = ParametricSurface(
@@ -20,14 +20,14 @@ class TheoremAnimation(ThreeDScene):
u,
v,
-u**2-v**2
- ]),v_min=-1,v_max=1,u_min=-1,u_max=1,checkerboard_colors=[PURPLE_E,PURPLE_E],
- resolution=(20, 20)).scale(1)
+ ]),v_min = -1, v_max = 1, u_min = -1, u_max = 1, checkerboard_colors = [PURPLE_E,PURPLE_E],
+ resolution = (20, 20)).scale(1)
- self.set_camera_orientation(phi=75 * DEGREES)
- self.begin_ambient_camera_rotation(rate=0.4)
+ self.set_camera_orientation(phi = 75 * DEGREES)
+ self.begin_ambient_camera_rotation(rate = 0.4)
d = Dot(np.array([0,0,0]), color = '#800000') #---- critical point
- r = Rectangle(fill_color= '#C0C0C0',fill_opacity =0.3).move_to(ORIGIN) #----tangent plane
+ r = Rectangle(fill_color = '#C0C0C0',fill_opacity = 0.3).move_to(ORIGIN) #----tangent plane
parabola1_text = TextMobject("Maximum with horizontal tangent plane").scale(0.7).to_corner(UL)