y times y times y (or y3)
That would be Y2 or Y squared.
The term "3y squared" represents the product of 3 and y squared. This means you are multiplying the number 3 by the variable y raised to the power of 2. In mathematical terms, it can be written as 3y^2. This expression denotes 3 times y squared, where y is multiplied by itself.
x = 2 so x squared = 4 and 2x squared = 2 times 4 = 8; y = 4 so xy = 2 times 4 = 8 and 3xy = 3 times 8 = 24; y squared = 4 times 4 = 16 and 4y squared = 4 times 16 = 64; so 8 + 24 - 64 = 32 - 64 = -32
x squared times y to the negative four thirds power
The GCF is xy
5(x^2 + y)
That would be Y2 or Y squared.
The term "3y squared" represents the product of 3 and y squared. This means you are multiplying the number 3 by the variable y raised to the power of 2. In mathematical terms, it can be written as 3y^2. This expression denotes 3 times y squared, where y is multiplied by itself.
Yx7y = 7y2 (squared )
That can be true when "x" and "y" are both zero, or both 1.
You have to put your heart into it!
To find two times the sum of ( x^2 ) and ( y^2 ) increased by three times the sum of ( x^2 ) and ( y^2 ), we first express it mathematically. The sum of ( x^2 ) and ( y^2 ) is ( x^2 + y^2 ). Thus, two times this sum is ( 2(x^2 + y^2) ), and three times it is ( 3(x^2 + y^2) ). Adding these together gives ( 2(x^2 + y^2) + 3(x^2 + y^2) = 5(x^2 + y^2) ).
It is the Cartesian equation of an ellipse.
distributive
2y squared * y cubed= 2y^5 (2y to the fifth power)
x to the 5th power times y to the fourth power
x cubed y cubed z squared