area of a Circle formulas |
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\( A \;=\; \pi \cdot r^2 \) (Radius) \( A \;=\; \dfrac{ \pi \cdot d^2 }{ 4 }\) (Diameter) \( A \;=\; \dfrac{ C^2 }{ 4 \cdot \pi }\) (Circumference) |
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Symbol | English | Metric |
\( A \) = area | \( in^2 \) | \( mm^2 \) |
\( C \) = circumference | \( in \) | \( mm \) |
\( d \) = diameter | \( in \) | \( mm \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \(\large{ in }\) | \( mm \) |
Circumference of a Circle formulas |
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\( C \;=\; 2 \cdot \pi \cdot r \) \( C \;=\; \pi \cdot d \) \( C \;=\; 2 \cdot \sqrt{ \pi \cdot A } \) \( C \;=\; \dfrac{ 2 \cdot A }{ r }\) |
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Symbol | English | Metric |
\( C \) = circumference | \( in \) | \( mm \) |
\( A \) = area | \( in^2 \) | \( mm^2 \) |
\( d \) = diameter | \( in \) | \( mm \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \( in \) | \( mm \) |
Diameter of a Circle formulas |
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\( d \;=\; 2 \cdot r \) \( d \;=\; \dfrac{ C }{ \pi }\) \( d \;=\; \sqrt{ \dfrac{ 4 \cdot A }{ \pi } }\) |
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Symbol | English | Metric |
\( d \) = diameter | \( in \) | \( mm \) |
\( A \) = area | \( in^2 \) | \( mm^2 \) |
\( C \) = circumference | \( in \) | \( mm \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \( in \) | \( mm \) |
Distance from Centroid of a Circle formulas |
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\( C_x \;=\; r \) \( C_y \;=\; r \) |
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Symbol | English | Metric |
\( C_x, C_y \) = distance from centroid | \( in \) | \( mm \) |
\( r \) = radius | \( in \) | \( mm \) |
Elastic Section Modulus of a Circle formula |
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\( S \;=\; \dfrac{ \pi \cdot r^3 }{ 4 } \) | ||
Symbol | English | Metric |
\( S \) = elastic section modulus | \( in^3 \) | \( mm^3 \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \( in \) | \( mm \) |
Plastic Section Modulus of a Circle formula |
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\( Z \;=\; \dfrac{ d^3 }{ 6 }\) | ||
Symbol | English | Metric |
\( Z \) = plastic section modulus | \( in^3 \) | \( mm^3 \) |
\( d \) = diameter | \( in \) | \( mm \) |
Polar Moment of Inertia of a Circle formulas |
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\(J_{z} \;=\; \dfrac{ \pi \cdot r^4 }{ 2 } \) \( J_{z1} \;=\; \dfrac{ 5 \cdot \pi \cdot r^4 }{ 2 } \) |
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Symbol | English | Metric |
\( J \) = torsional constant | \( in^4 \) | \( mm^4 \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \( in \) | \( mm \) |
Radius of a Circle formulas |
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\( r \;=\; \dfrac{ d }{ 2 }\) \( r \;=\; \dfrac{ C }{ 2 \cdot \pi }\) \( r \;=\; \sqrt{ \dfrac{ A }{ \pi } }\) \( r \;=\; \dfrac{ 2 \cdot A }{ C }\) \( r \;=\; \sqrt{ \dfrac{ c^2 }{ 4 } + h^2 } \) \( r \;=\; \dfrac{ L }{ \Delta }\) \( r \;=\; h + h' \) |
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Symbol | English | Metric |
\( r \) = radius | \( in \) | \( mm \) |
\( \Delta \) = angle | \( deg \) | \( rad \) |
\( A \) = area | \( in^2 \) | \( mm^2 \) |
\( c \) = chord | \( in \) | \( mm \) |
\( C \) = circumference | \( in \) | \( mm \) |
\( d \) = diameter | \( in \) | \( mm \) |
\( h \) = length of radius from radius center to midpoint of chord. | \( in \) | \( mm \) |
\( h' \) = length of radius from midpoint of chord to point on circular curve. | \( in \) | \( mm \) |
\( L \) = length of any circular curve measured along the arc. | \( in \) | \( mm \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \( in \) | \( mm \) |
Radius of Gyration of a Circle formulas |
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\( k_{x} \;=\; \dfrac{ r }{ 2 }\) \( k_{y} \;=\; \dfrac{ r }{ 2 }\) \( k_{z} \;=\; \dfrac{ \sqrt{2} }{ 2 } \cdot r \) \( k_{x1} \;=\; \dfrac{ \sqrt{5} }{ 2 } \cdot r \) \( k_{y1} \;=\; \dfrac{ \sqrt{5} }{ 2 } \cdot r \) \( k_{z1} \;=\; \dfrac{ \sqrt{10} }{ 2 } \cdot r \) |
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Symbol | English | Metric |
\( k \) = radius of gyration | \( in \) | \( mm \) |
\( r \) = radius | \( in \) | \( mm \) |
Second Moment of Area of a Circle formulas |
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\( I_{x} \;=\; \dfrac{ \pi \cdot r^4 }{ 4 }\) \( I_{y} \;=\; \dfrac{ \pi \cdot r^4 }{ 4 }\) \( I_{x1} \;=\; \dfrac{ 5 \cdot \pi \cdot r^4 }{ 4 }\) \( I_{y1} \;=\; \dfrac{ 5 \cdot \pi \cdot r^4 }{ 4 }\) |
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Symbol | English | Metric |
\( I \) = moment of inertia | \( in^4 \) | \( mm^4 \) |
\( \pi \) = Pi | \(3.141 592 653 ...\) | \(3.141 592 653 ...\) |
\( r \) = radius | \( in \) | \( mm \) |