Photo for a post on the topic of trigonometry for the telegram channel of the mathematics training center
Post on the topic of trigonometry for the telegram channel of the mathematics training center
A highly detailed airbrush painting, using a parametric equation to create captivating art, x(t) = A * cos(a * t) * cos(t) + A * sin(b * t) * cos(t) and y(t) = A * cos(a * t) * sin(t) + A * sin(b * t) * sin(t), where 'A', 'a', and 'b' are constants, and 't' ranges from 0 to 2π. By experimenting with different values for 'A', 'a', and 'b', you can generate a variety of intriguing and visually appealing designs, combine this with other artistic elements and styles to create a captivating abstract design --ar 3:2
A highly detailed airbrush painting, using a parametric equation to create captivating art, x(t) = A * cos(a * t) * cos(t) + A * sin(b * t) * cos(t) and y(t) = A * cos(a * t) * sin(t) + A * sin(b * t) * sin(t), where 'A', 'a', and 'b' are constants, and 't' ranges from 0 to 2π. By experimenting with different values for 'A', 'a', and 'b', you can generate a variety of intriguing and visually appealing designs, combine this with other artistic elements and styles to create a captivating abstract design --ar 3:2
A highly detailed airbrush painting, using a parametric equation to create captivating art, x(t) = A * cos(a * t) * cos(t) + A * sin(b * t) * cos(t) and y(t) = A * cos(a * t) * sin(t) + A * sin(b * t) * sin(t), where 'A', 'a', and 'b' are constants, and 't' ranges from 0 to 2π. By experimenting with different values for 'A', 'a', and 'b', you can generate a variety of intriguing and visually appealing designs, combine this with other artistic elements and styles to create a captivating abstract design --ar 3:2
A highly detailed airbrush painting, using a parametric equation to create captivating art, x(t) = A * cos(a * t) * cos(t) + A * sin(b * t) * cos(t) and y(t) = A * cos(a * t) * sin(t) + A * sin(b * t) * sin(t), where 'A', 'a', and 'b' are constants, and 't' ranges from 0 to 2π. By experimenting with different values for 'A', 'a', and 'b', you can generate a variety of intriguing and visually appealing designs, combine this with other artistic elements and styles to create a captivating abstract design --ar 3:2
a graphical depiction of the relationship between the three trigonometric functions: sine, cosine, and tangent, with the unit circle in the background, abstract, highly detailed
A highly detailed airbrush painting, using a parametric equation to create captivating art, x(t) = A * cos(a * t) * cos(t) + B* sin(b * t) * cos(t) and y(t) = A * cos(a * t) * sin(t) + B* sin(b * t) * sin(t), where 'A', 'B', 'a', and 'b' are constants, and 't' ranges from 0 to 2π. By experimenting with different values for 'A', 'B', 'a', and 'b', you can generate a variety of intriguing and visually appealing designs, combine this with other artistic elements and styles to create a captivating abstract design.
On the phone screen, there is a post that has been replied to by many people.
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A highly detailed airbrush painting, using a parametric equation to createcaptivating art, x(t) = A * cos(a * t) * cost) + A *sin(b* t) * cost) and y(t) = A * cos(a *t) * sin(t) +A* sin(b * t) * sin(t), where A, a, and b are constants, and t ranges from 0 to 2n. By experimenting with different values for A, a, and b, you can generate a variety of intriguing and visually appealing designs, combine this with other artistic elements and styles to create a captivating abstract design --ar 3:2
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a discord profile picture of a microwave oven isometric sketch drawing 3rd angle view with dimensions, 2d printer scan image
a discord profile picture of a microwave oven isometric sketch drawing 3rd angle view with dimensions, 2d printer scan image
a discord profile picture of a microwave oven isometric sketch drawing 3rd angle view with dimensions, 2d printer scan image
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