m3*m5 = m3+5 = m8
To solve (3^3 \times 3^2), you can use the property of exponents that states (a^m \times a^n = a^{m+n}). Therefore, (3^3 \times 3^2 = 3^{3+2} = 3^5). Calculating (3^5) gives you (243).
it depends on what m is.
If m equals 3 then m to the 6th power (m6) equals 36 or 3 x 3 x 3 or 27
The "second power" means squared. "Squared" means multiplied by itself. Thus M to the second power = M times M.
(3.2 / 5)m = 3 multiply both sides by (5 / 3.2) m = 3 * 5 / 3.2 The algebra problem is now basic math. m = 4.6875 Check: 3.2(4.6875) / 5 = 3 15 / 5 = 3 ■
m3*m5 = m3+5 = m8
To solve (3^3 \times 3^2), you can use the property of exponents that states (a^m \times a^n = a^{m+n}). Therefore, (3^3 \times 3^2 = 3^{3+2} = 3^5). Calculating (3^5) gives you (243).
m^4 n^5 - m^20 n^21
5m=3 therefore m =3 over 5
m5/m3 = m2
m7/2
m^4 x m^3 = m^7Using a numerical example, 2^4 x 2^3 = 16 x 8 = 128 = 2^7
3m-5
To simplify (m^3 \times m^6), you add the exponents when multiplying like bases. In this case, the base is (m), so you would add the exponents 3 and 6 to get (m^{3+6} = m^9). Therefore, (m^3 \times m^6) simplifies to (m^9).
the area of an mxm square is m^2. For example, a 3x3 square has area 3^2 or 9
The expression is: 3m-5
Well, hello there! When we see "m to the third power," it means we are multiplying 'm' by itself three times. So, if we have m x m x m, that's what m to the third power represents. It's like painting a lovely little trio of 'm's dancing together on our canvas of mathematics.