yes
I suggest that a candlepin bowling ball cannot have a volume of 48 inches cubed since that is huge. 48 inches cubed = 48"*48"*48" = (48*2.54cm)*(48*2.54cm)*(48*2.54cm) >120*120*120cm3 = 1 728 000 cm3 which is more than 300 times larger than the 5274 cm cubed ball.
2 times the cube root of 6
rr cubed is r6rr cubed is r6rr cubed is r6rr cubed is r6
The cube root of 48 is approximately 3.84. To find the cube root of a number, you are looking for a number that, when multiplied by itself twice, equals the original number. In this case, 3.84 x 3.84 x 3.84 is approximately equal to 48.
Inches cubed x 16.387 = cm cubed
3.63424119 cubed = 48
I suggest that a candlepin bowling ball cannot have a volume of 48 inches cubed since that is huge. 48 inches cubed = 48"*48"*48" = (48*2.54cm)*(48*2.54cm)*(48*2.54cm) >120*120*120cm3 = 1 728 000 cm3 which is more than 300 times larger than the 5274 cm cubed ball.
3.63424119 cubed = 48
2 times the cube root of 6
The expression, not equation, is probably 481/3
The VOLUME is 4 x 2 x 6 = 48 inches cubed
rr cubed is r6rr cubed is r6rr cubed is r6rr cubed is r6
The cube root of 48 is approximately 3.84. To find the cube root of a number, you are looking for a number that, when multiplied by itself twice, equals the original number. In this case, 3.84 x 3.84 x 3.84 is approximately equal to 48.
2 cubed is 8.3 cubed is 27.4 cubed is 64.5 cubed is 125.6 cubed = 216.7 cubed is 343.
Well, honey, the cubed numbers between 2000 and 3000 are 8 cubed (512), 9 cubed (729), 10 cubed (1000), 11 cubed (1331), 12 cubed (1728), 13 cubed (2197), 14 cubed (2744), and 15 cubed (3375). So, there you have it, sweetie!
Inches cubed x 16.387 = cm cubed
1 cubed = 13 = 1x1x1 = 1 2 cubed = 23 = 2x2x2 = 8 3 cubed = 33 = 3x3x3 = 27 4 cubed = 43 = 4x4x4 = 64 5 cubed = 53 = 5x5x5 = 125