200:10 = 20:1
It is 200:1.
To find 200 to the ratio of 2 and 3, we first need to add the two parts of the ratio (2 + 3 = 5). Then, we divide 200 by the sum of the ratio parts (200 ÷ 5 = 40). Therefore, 200 to the ratio of 2 and 3 is 40.
To write 200 of 150 in a ratio, you express it as 200:150. This can be simplified by dividing both numbers by their greatest common divisor, which is 50, resulting in a simplified ratio of 4:3. Therefore, the ratio of 200 to 150 is 4:3.
The similarity ratio of two circles can be determined by the ratio of their areas. Given the areas of the circles are 2π m² and 200π m², the ratio of the areas is ( \frac{2\pi}{200\pi} = \frac{2}{200} = \frac{1}{100} ). The similarity ratio, which is the square root of the area ratio, is therefore ( \sqrt{\frac{1}{100}} = \frac{1}{10} ). Thus, the similarity ratio of the two circles is ( 1:10 ).
.5% = .5/100 = 1/200 so the ratio would be 1:200
10.
It is 10/200, a ratio which can be simplified if you so require.
200 divided in the ratio of 19 = 10.526315789473685
It is 200:1.
It is A/200.
The ratio of AC voltages is the same as the ratio of winding-turns in the transformer. Vp / Vs = Np / Ns (10 volts AC) / Vs = 200 / 20 = 10 Vs = (10 volts AC) / 10 = 1 volt AC.
To find 200 to the ratio of 2 and 3, we first need to add the two parts of the ratio (2 + 3 = 5). Then, we divide 200 by the sum of the ratio parts (200 ÷ 5 = 40). Therefore, 200 to the ratio of 2 and 3 is 40.
To find the ratio of 10mm to 2m, we first need to convert both measurements to the same unit. Since 1m is equal to 1000mm, 2m is equal to 2000mm. The ratio of 10mm to 2000mm is 10:2000, which can be simplified to 1:200. So, the ratio of 10mm to 2m is 1:200.
To write 200 of 150 in a ratio, you express it as 200:150. This can be simplified by dividing both numbers by their greatest common divisor, which is 50, resulting in a simplified ratio of 4:3. Therefore, the ratio of 200 to 150 is 4:3.
.5% = .5/100 = 1/200 so the ratio would be 1:200
It is: 1 to 4
It is: 5 to 6