subject
Mathematics, 03.06.2021 02:20 573589

To spherical balls of wax are tightly fitted into a cylinder you know that the wax balls have a radius of 3 cm as does the cylinderYou need to figure out how Highup in the cylinder the wax will rise when the balls are melted show your work and clearly indicate your final answer for h. What is the total volume of both balls express your answers in terms of possible.

Assume there is no change in volume of wax after it has melted after melting what shape of the wax

What is the height of the wax inside the cylinder after it completely melts


To spherical balls of wax are tightly fitted into a cylinder you know that the wax balls have a rad

ansver
Answers: 2

Another question on Mathematics

question
Mathematics, 21.06.2019 16:40
Which is the graph of f(x) = (4)x? image for option 1 image for option 2 image for option 3 image for option 4
Answers: 1
question
Mathematics, 21.06.2019 18:10
Television sizes are based on the length of the diagonal of the television's rectangular screen. so, for example, a 70-inch television is a television having a diagonal screen length of 70 inches. if a 70 inch television's diagonal forms a 29°angle with the base of the screen, what is the vertical height (1) of the screen to the nearest inch? 70 inhin
Answers: 3
question
Mathematics, 21.06.2019 18:50
The volume of a cone is 37x3 cubic units and its height is x units. which expression represents the radius of the cone's base, in units? 1 s o 3x o 6x obx 93x2
Answers: 1
question
Mathematics, 21.06.2019 19:00
Solving systems of linear equations: tables represent two linear functions in a systemöwhat is the solution to this system? 0 (10)0 (1.6)0 18,26)0 18-22)
Answers: 1
You know the right answer?
To spherical balls of wax are tightly fitted into a cylinder you know that the wax balls have a radi...
Questions
question
Mathematics, 08.11.2020 05:00
question
Mathematics, 08.11.2020 05:00
question
English, 08.11.2020 05:00
question
English, 08.11.2020 05:00
question
Mathematics, 08.11.2020 05:00
Questions on the website: 13722367