33 Other formulas that you can solve using the same Inputs

Total Surface Area of a Cone
Total Surface Area=pi*Radius*(Radius+sqrt(Radius^2+Height^2)) GO
Chord length when radius and perpendicular distance are given
Chord Length=sqrt(Radius^2-Perpendicular Distance^2)*2 GO
Lateral Surface Area of a Cone
Lateral Surface Area=pi*Radius*sqrt(Radius^2+Height^2) GO
Inscribed angle when radius and length for major arc are given
Inscribed Angle=(90*Length of Major Arc)/(pi*Radius) GO
Total Surface Area of a Cylinder
Total Surface Area=2*pi*Radius*(Height+Radius) GO
Centripetal Force
Centripetal Force=(Mass*(Velocity)^2)/Radius GO
Central angle when radius and length for major arc are given
Central Angle=Length of Major Arc/Radius GO
Central angle when radius and length for minor arc are given
Central Angle=Length of Minor Arc/Radius GO
Surface Area of a Capsule
Surface Area=2*pi*Radius*(2*Radius+Side) GO
Volume of a Capsule
Volume=pi*(Radius)^2*((4/3)*Radius+Side) GO
Lateral Surface Area of a Cylinder
Lateral Surface Area=2*pi*Radius*Height GO
Perimeter Of Sector
Perimeter Of Sector=Arc Length+2*Radius GO
Chord Length when radius and angle are given
Chord Length=sin(Angle A/2)*2*Radius GO
Arc Length
Arc Length=2*pi*Radius*(Angle A/360) GO
Circumference of Circle
Circumference of Circle=2*pi*Radius GO
Curved Surface Area of a Hemisphere
Curved Surface Area=2*pi*Radius^2 GO
Volume of a Circular Cone
Volume=(1/3)*pi*(Radius)^2*Height GO
Total Surface Area of a Hemisphere
Total Surface Area=3*pi*Radius^2 GO
Bottom Surface Area of a Cylinder
Bottom Surface Area=pi*Radius^2 GO
Perimeter of a quarter circle when radius is given
Perimeter=2*Radius*(1+(pi/4)) GO
Base Surface Area of a Hemisphere
Base Surface Area=pi*Radius^2 GO
Base Surface Area of a Cone
Base Surface Area=pi*Radius^2 GO
Top Surface Area of a Cylinder
Top Surface Area=pi*Radius^2 GO
Volume of a Circular Cylinder
Volume=pi*(Radius)^2*Height GO
Area of a Circle when radius is given
Area of Circle=pi*Radius^2 GO
Surface Area of a Sphere
Surface Area=4*pi*Radius^2 GO
Volume of a Hemisphere
Volume=(2/3)*pi*(Radius)^3 GO
Volume of a Sphere
Volume=(4/3)*pi*(Radius)^3 GO
Area of a Sector
Area=(Radius*Arc Length)/2 GO
Perimeter of a Semicircle when radius is given
Perimeter=Radius*(pi+2) GO
Area of a quarter circle when radius is given
Area=(pi*(Radius)^2)/4 GO
Area of a Semicircle when radius is given
Area=(pi*(Radius)^2)/2 GO
Diameter of a circle when radius is given
Diameter =2*Radius GO

1 Other formulas that calculate the same Output

Inscribed angle when radius and length for major arc are given
Inscribed Angle=(90*Length of Major Arc)/(pi*Radius) GO

Inscribed angle when radius and length for minor arc are given Formula

Inscribed Angle=(90*Length of Minor Arc)/(pi*Radius)
More formulas
Slope Of Line GO
Distance Between Line GO
Arc Length GO
Centroid of a Trapezoid GO
Circumference of Circle GO
Diameter of a circle when circumference is given GO
Radius of a circle when circumference is given GO
Radius of a circle when area is given GO
Diameter of a circle when area is given GO
Radius of a circle when diameter is given GO
Diameter of a circle when radius is given GO
Inscribed angle when radius and length for major arc are given GO
Central angle when radius and length for major arc are given GO
Central angle when radius and length for minor arc are given GO
Side of a Kite when other side and area are given GO
Side of a Kite when other side and perimeter are given GO
Side of a Rhombus when Diagonals are given GO

What is Inscribed angle when radius and length for minor arc are given?

Inscribed angle when radius and length for minor arc are given is defined by two chords of the circle sharing an endpoint or as an angle whose vertex is on a circle and whose sides contain chords of a circle. This is different than the central angle, whose vertex is at the center of a circle where the measure of the central angle is congruent to the measure of the minor arc.

How to Calculate Inscribed angle when radius and length for minor arc are given?

Inscribed angle when radius and length for minor arc are given calculator uses Inscribed Angle=(90*Length of Minor Arc)/(pi*Radius) to calculate the Inscribed Angle, In geometry, an inscribed angle is the angle formed in the interior of a circle when two secant lines intersect on the circle. It can also be defined as the angle subtended at a point on the circle by two given points on the circle. Inscribed Angle and is denoted by θ symbol.

How to calculate Inscribed angle when radius and length for minor arc are given using this online calculator? To use this online calculator for Inscribed angle when radius and length for minor arc are given, enter Radius (r) and Length of Minor Arc (L) and hit the calculate button. Here is how the Inscribed angle when radius and length for minor arc are given calculation can be explained with given input values -> 14.32394 = (90*9)/(pi*18).

FAQ

What is Inscribed angle when radius and length for minor arc are given?
In geometry, an inscribed angle is the angle formed in the interior of a circle when two secant lines intersect on the circle. It can also be defined as the angle subtended at a point on the circle by two given points on the circle and is represented as θ=(90*L)/(pi*r) or Inscribed Angle=(90*Length of Minor Arc)/(pi*Radius). Radius is a radial line from the focus to any point of a curve and Length of Minor Arc is the length of the arc smaller than a semicircle. A central angle that is subtended by a minor arc has a measure of less than 180°.
How to calculate Inscribed angle when radius and length for minor arc are given?
In geometry, an inscribed angle is the angle formed in the interior of a circle when two secant lines intersect on the circle. It can also be defined as the angle subtended at a point on the circle by two given points on the circle is calculated using Inscribed Angle=(90*Length of Minor Arc)/(pi*Radius). To calculate Inscribed angle when radius and length for minor arc are given, you need Radius (r) and Length of Minor Arc (L). With our tool, you need to enter the respective value for Radius and Length of Minor Arc and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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