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To determine the speed of rotation of a gear driven by another gear, you can use the gear ratio formula: Gear Ratio = Number of Teeth on Driven Gear / Number of Teeth on Driving Gear. In this case, the gear ratio is 40/20 = 2. Since the driving gear is rotating at 10 rpm, the driven gear will rotate at 10 rpm / 2 = 5 rpm.
The time it takes for a flag to rotate once in a full circle depends on the speed of rotation. If the flag rotates at a constant speed, the time can be calculated using the formula: time = 1 / rotational speed. For example, if the flag takes 10 seconds to complete one full rotation, the rotational speed is 1 rotation per 10 seconds, so the time taken for one full rotation is 10 seconds.
In the northern hemisphere the right side of a tornado is generally worse. Since most tornadoes in the northern hemisphere rotate clockwise the winds right side of the tornado will be equal to the speed at which it spins plus the speed it is moving at. The opposite is true in the southern hemisphere.
In terms of traveling speed tornadoes can be stationary or travel at over 70 mph. The average forwards speed is 35 mph. In terms of wind speed, winds in a tornado can travel at anywhere from 65 mph to over 300 mph. The average tornado probably has winds in the range of 80 to 90 mph. Tornadoes that cause the most serious damage have winds over 130 mph. Tornadoes with winds over 200 mph are very rare.
Throwing a javelin at the optimal angle. Throwing a javeline at the optimal angle is throwing a javelin at the angle which the air flows efficiently around the javeline.The center of pressure is the aerodynamic force of drag and lift on the javelin.before the 1986 change in javelins , some of the best throwers in the world would throw the javelin with as little as 30 degree angle but greater speed because they were able to hold onto the javelin for longer , producing more force . Good throwers still use this method but the most commen method is releasing the javelin at about a 40 degree angles,causing a longer flight for the javelin.
A Triangle! (musical instrument)The (Swanson) speed square and the navigational triangle are two other triangular instruments.
You should have paid the extra 3 dollars for the Swanson Speed Square with explanations of all of its uses, for real, get it and read it, it will help alot. That being said, that diamond sits at 3.5 inches so that you can mark boards to rip(cut) to the width of a 2x4 wall. If you notice the graduated indents on the inside of the square, they serve the same purpose but 3.5 is the most common stud width. The booklet has instructions on using the speed square to cut rafter angles as well as reverse angles and built in calculations for cutting hip and valley rafters at the same pitch.
The cast of Speed Dadding - 2013 includes: Henry Benton as Adam Sydney Benton as Kate Jan Potts as Waitress Meredith Rineberg as Waitress Millie Swanson as Julie Ely Swanson as Wes
A speed square or rafter angle square is a tool that can be used as a saw guide. The purpose of this tool is to guide the saw when making short 45 and 90 degree angles.
To determine the hull speed of a sailboat, multiply the square root of the length at the water line by 1.34. The answer will be in nautical miles per hour.
To determine the maximum speed of a vehicle or object, you can use the formula: maximum speed square root of (2 x acceleration x distance). This formula takes into account the acceleration of the vehicle or object and the distance it travels. By plugging in the values for acceleration and distance, you can calculate the maximum speed it can reach.
The formula to determine speed is speed = distance / time. To determine the diameter of a circle, the formula is diameter = 2 x radius.
The two factors that determine how much kinetic energy something has are its mass and its velocity. The kinetic energy of an object is directly proportional to both its mass and the square of its velocity.
The formula to determine speed is Speed= wavelength*frequency
angles. timing and speed
Actuator speed is determined by:
To calculate the maximum speed of an object, you can use the formula: maximum speed square root of (2 acceleration distance). This formula takes into account the acceleration of the object and the distance it travels. By plugging in the values for acceleration and distance, you can determine the maximum speed the object can reach.