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  1. a. Using your compass, draw a circle with any radius. b. Label the center of the circle and select any point on the circle. Connect the two points. This segment is known as the radius. c. Measure the length of your radius. Use the formula =2𝜋𝑟 to calculate the circumference of your circle. Leave your answers in terms of 𝜋. d.

  2. Map Radius Calculator. You can draw multiple circles, distances, areas or elevations, import/export data save and edit them later with a larger map! Draw a Radius around a map location. Draw a radius circle around a location in Google Maps to show a distance from that point in all directions.

  3. Use this tool to draw a circle by entering its radius along with an address. You can also click a point on the map to place a circle at that spot. You can adjust the placement of the circle by dragging it to a different location.

  4. We can also use pi to find the area of any circle if we know its radius or diameter. The formula is: Area = pi times radius squared; We can use these formulas to find the diameter, radius, circumference, or area of circles and plug in the given values.

  5. Circle worksheets: finding the area. Students determine the area of circles given the radius or the diameter. Worksheets 1-3 are in customary units; 4-6 are metric. All worksheets are printable pdf files.

  6. Six congruent circles form a ring where each of the six circles is tangent to the two circles adjacent to it as shown. The three lightly shaded circles are internally tangent to the circle with radius 4 while the three darkly shaded circles are externally tangent to the circle with radius 1. The radius of the six congruent circles can be ...

  7. Example: Find the radius of a circle in which a 48 inch chord is 8 inches closer to the center than a 40 inch chord. Step 1: Draw a diagram Step 2: Recognize geometry properties and identify useful parts of diagram 1) Radius is perpendicular bisector of a chord. 2) Pythagorean Theorem 3) All radii are congruent Step 3: Solve X + 24 (X + + 202