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30 meters subtends 100 seconds of arc.

I get a distance of 61,879 meters.

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13y ago

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What is the distance from earth to moon in Square miles?

The average distance from Earth to the Moon is about 238,855 miles. This distance is not typically measured in square miles since it is a linear measurement, not an area measurement.


What is the orbital angular momentum formula and how is it used in physics?

The orbital angular momentum formula is L = r x p, where L is the angular momentum, r is the position vector, and p is the momentum vector. In physics, this formula is used to describe the rotational motion of an object around a fixed point. It helps in understanding the conservation of angular momentum and the behavior of rotating systems, such as planets orbiting the sun or electrons moving around an atomic nucleus.


Which is more closely related to magnitude mass or diameter?

Well, friend, when we talk about magnitude, we're usually talking about size. In this case, diameter is more closely related to size because it specifically refers to the distance across a circle or sphere. Mass, on the other hand, is about how much matter an object contains. Both are important in understanding the world around us, so let's appreciate the beauty in both concepts.


Which planet has a moon more than half its size?

Pluto has a moon nearly half its size.?Pluto's diameter is about 2300 km, while its moon Charon has an estimated diameter of 1200 km. Of course, remembering that volume is related to the cube of linear dimensions, that means Pluto's volume is actually about eight times that of Charon.


How does the time for a planet to orbit the sun change with its distance from the sun?

The further away from the sun, the longer it takes to make a revolution around the sun.When you take the average distance of a planet from the sun (average of aphelionand perihelion) and plot it onCartesian coordinates, you will notice that there is adistinct relationship.Units are in US customaryThe line is not linear but rather a power. Trend line: y = 66654(x^-0.5) or y = 66654/sqrt(x).Plot average orbital velocity in the Y axis MPH and average distance in the x axis in AU.At a distance of approx 1 mile from the surface from the sun the orbital period isabout 15 seconds and a velocity of the speed of light!The farther from the sun, the longer the orbiting time.

Related Questions

What distance are lines of longitude used to show?

None. they are a measure of angular distance and not of linear distance.


What is the difference between angular and linear diameter?

linear velocity is a change of speed in a linear fashion. Angular speed is the rate of change of angle with respect to time. These two are convertible in a case of a circle motion. the lenght of an arc is l = RO. where O is the angle. hence v= l/t and therefore v=RA where A = O/t.


What is the small-angle formula?

The small angle formula is used for measuring the distance to a far away object when the actual size and angular size are known, or for finding out the actual size of a faraway object when the distance to the object and angular size are known. In arc-seconds: a = 206265 x D/d where a = the angular size of the object in arc-seconds D = the actual linear size of an object in km d = the distance to the object in km 206265 = the number of arc-seconds in a complete circle divided by 2pi In Radians: a = D/d where a = angular size of object in radians


How is angular acceleration related to linear acceleration in a rotating object?

Angular acceleration and linear acceleration are related in a rotating object through the equation a r, where a is linear acceleration, r is the radius of the object, and is the angular acceleration. This equation shows that the linear acceleration of a point on a rotating object is directly proportional to the angular acceleration and the distance from the center of rotation.


What does the linear speed of a rotating object depend on?

The linear speed of a rotating object depends on its angular speed (how fast it rotates) and the distance from the axis of rotation (the radius). Linear speed is calculated as the product of the angular speed and the radius.


What equations link angular and linear momentum If you exert a force on a free floating body it will have angular and linear momentum In what proportions and how are they linked?

angular momentum = linear momentum (of object) x perpendicular distance (from origin to the object) where x stands for cross product. angular momentum = mv x r (perpendicular dist.)


Relation between angular velocity and linear velocity?

Angular velocity is the rate of change of an object's angular position with respect to time, while linear velocity is the rate of change of an object's linear position with respect to time. The relationship between angular velocity and linear velocity depends on the distance of the object from the axis of rotation. For an object rotating around a fixed axis, the linear velocity is equal to the angular velocity multiplied by the radius of the rotation.


How many linear feet are in a 43 foot diameter circle?

43 linear feet. The diameter of the circle is the longest distance that you can have in the circle.


How to convert Angular velocity to velocity?

To convert angular velocity to linear velocity, you can use the formula: linear velocity = angular velocity * radius. This formula accounts for the fact that linear velocity is the distance traveled per unit time (similar to speed), while angular velocity is the rate of change of angular position. By multiplying angular velocity by the radius of the rotating object, you can calculate the linear velocity at the point of interest on that object.


What is the linear distance traveled in one revolution of a 20 meter in diameter wheel?

Linear distance of one revolution = 3.14 x diameter = 3.14 x 20 = 62.8 meters


What is the relationship between linear and angular acceleration in rotational motion?

In rotational motion, linear acceleration and angular acceleration are related. Linear acceleration is the rate of change of linear velocity, while angular acceleration is the rate of change of angular velocity. The relationship between the two is that linear acceleration and angular acceleration are directly proportional to each other, meaning that an increase in angular acceleration will result in a corresponding increase in linear acceleration.


How can one determine velocity from angular velocity?

To determine velocity from angular velocity, you can use the formula v r, where v is the linear velocity, is the angular velocity, and r is the radius of the rotating object. This formula relates the rotational speed of an object (angular velocity) to its linear speed (velocity) at a given distance from the center of rotation.