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The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{4.5^2 + 1.5^2} \approx 4.74$$\sqrt{3.5^2 + 3.5^2} \approx 4.95$

The cheeses can be arranged like this:

enter image description here (There is square unit of tomato sauce with no cheese on the right)

The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{4.5^2 + 1.5^2} \approx 4.74$

The cheeses can be arranged like this:

enter image description here (There is square unit of tomato sauce with no cheese on the right)

The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{3.5^2 + 3.5^2} \approx 4.95$

The cheeses can be arranged like this:

enter image description here (There is square unit of tomato sauce with no cheese on the right)

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caPNCApn
  • 19.9k
  • 2
  • 65
  • 99

The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{4.5^2 + 1.5^2} \approx 4.74$

The cheeses can be arranged like this:

enter image description here (There is square unit of tomato sauce with no cheese on the right)

The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{4.5^2 + 1.5^2} \approx 4.74$

The cheeses can be arranged like this:

enter image description here

The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{4.5^2 + 1.5^2} \approx 4.74$

The cheeses can be arranged like this:

enter image description here (There is square unit of tomato sauce with no cheese on the right)

Source Link
caPNCApn
  • 19.9k
  • 2
  • 65
  • 99

The radius of the smallest pizza that can accommodate all 12 cheeses is

$\sqrt{4.5^2 + 1.5^2} \approx 4.74$

The cheeses can be arranged like this:

enter image description here