1.9 to 1
23:100
For two similar cylinders, the ratio of their volumes is the cube of the ratio of their corresponding linear dimensions, such as height and radius. Given that the ratio of their heights and radii is 23, the volume ratio will be (23^3). Therefore, the ratio of the volumes of the two cylinders is (23^3:1), which equals (12167:1).
It is 65/23.
The simple ratio of 1 hour (HR) to 23 hours is 1:23. This ratio expresses the relationship between the two quantities, indicating that for every 1 hour, there are 23 hours.
There are 12 inches to 1 foot, so the ratio is 12 to 1.
12 is a single number. In so far as it can represent a ratio, it is a ratio of 12 to 1: a unit ratio.12 is a single number. In so far as it can represent a ratio, it is a ratio of 12 to 1: a unit ratio.12 is a single number. In so far as it can represent a ratio, it is a ratio of 12 to 1: a unit ratio.12 is a single number. In so far as it can represent a ratio, it is a ratio of 12 to 1: a unit ratio.
It is 23/1.
It is 23:1.
23:100
23 : 100
The ratio of their volumes is 23^3 = 12167.
For two similar cylinders, the ratio of their volumes is the cube of the ratio of their corresponding linear dimensions, such as height and radius. Given that the ratio of their heights and radii is 23, the volume ratio will be (23^3). Therefore, the ratio of the volumes of the two cylinders is (23^3:1), which equals (12167:1).
23:1 or 23/1
It is 65/23.
The ratio of its sides is 45:23 = 1.9565 or 23:45 = 0.511...
The simple ratio of 1 hour (HR) to 23 hours is 1:23. This ratio expresses the relationship between the two quantities, indicating that for every 1 hour, there are 23 hours.
There are 12 inches to 1 foot, so the ratio is 12 to 1.