The average speed is exactly 30 meters per 6 seconds.
Expressed in some other units . . .
-- 300 meters/minute
-- 18 kilometers/hour
-- 5 meters/second
-- 0.005 millimeters/microsecond
Composite marble is made by mixing at least 90 percent of natural marble chips or powder with polyester resin and color pigment. It is generally formed in blocks with the size of around 120x300x85cm and is cut and polished as of cutting natural marble. The original idea of inventing composite marble is to eliminate the downsides of natural marble such as inconsistency in color, porosity, color limitation,uncontrollable veining, etc. Composite marble has gained popularity among designers for its compatibility with today's modernity.
6.5cm
There are 13 marbles in total. The order is specified.P(1st is white and the 2ndis purple) = (7/13)(6/12) = (7/13)(1/2) = 7/26.
To determine how many 1-inch marbles can fit in a square foot, we first need to convert the square footage to square inches. Since there are 144 square inches in a square foot (12 inches x 12 inches), we can fit 144 marbles with a diameter of 1 inch in a square foot. This calculation assumes the marbles are arranged in a perfect grid without any gaps between them.
A tomato is like a ruby nestled in a garden, its vibrant red hue sparkling under the sun. Its round shape and glossy surface evoke the image of a polished marble, inviting and full of promise.
The duration of The Magnificent Marble Machine is 1800.0 seconds.
The marble headers were people who crossed the Americans across the Delaware river
well what i do with mine is get a marble and a bowl and put the marble in the bowl and have her swirl the bowl enternainment in seconds!
The kinetic energy of the toy marble as it moves is what allows it to roll across the floor. This energy comes from the marble's motion and speed.
Becuase its wearing down the calcite and marble as it runs across it
200 meters per hour
Marble Arch is a monument at the northeast corner of Hyde Park in London. The Marble Arch Tube station is at the west end of Oxford Street and at the south end of Edgware Road, across from the park.
The distance a marble falls can be calculated using the formula for free fall: ( d = \frac{1}{2} g t^2 ), where ( g ) is the acceleration due to gravity (approximately 9.81 m/s²) and ( t ) is the time in seconds. For a fall of 10 seconds, the distance would be ( d = \frac{1}{2} \times 9.81 \times (10)^2 = 490.5 ) meters. Therefore, a marble will fall approximately 490.5 meters in 10 seconds, assuming no air resistance.
If you try to roll a marble across a spinning lazy susan, the marble's path will likely be affected by the rotation of the lazy susan. The marble might curve or veer off course due to the spinning motion, making it more challenging to control its direction and speed.
The marble has kinetic energy as it is moving. Additionally, there may be some small amount of potential energy due to the height of the marble above the floor.
Speed affects a marble by determining how fast it moves across a surface and how quickly it accelerates or decelerates. Motion affects a marble by influencing its direction and trajectory as it rolls or bounces. Both speed and motion are key factors in determining how a marble will interact with its environment.
Anything that comes into contact with anything else generates friction. However, most of the time, this amount of friction, and the heat it produces, is so small that it is undetectable without extremely precise instruments.