To find the value of k, you need to isolate k on one side of the equation. Start by adding 7 to both sides of the equation to get 5k = 0. Then, divide both sides by 5 to solve for k. Therefore, the value of k is 0.
All we can deduce from that information is that k is a positive perfect square. Is that really the whole question? What?
K+1 is as simplified as it gets. Unless you find the value of K. You can't add a variable and number.
To solve the equation 5.6 + k = 10, you need to isolate the variable "k" on one side of the equation. Start by subtracting 5.6 from both sides to get k = 10 - 5.6. This simplifies to k = 4.4. Therefore, the value of k that satisfies the equation is 4.4.
k = 10 3k = 30 When a number appears next to a variable (like "k") it usually means multiply the number times the variable.
To solve an equation, use the order of operations in reverse:7k-52 = 9(addition)7k = 61(division)k = (61/7) or ~8.71
1
k = 0.1
To find the value of k, you need to isolate k on one side of the equation. Start by adding 7 to both sides of the equation to get 5k = 0. Then, divide both sides by 5 to solve for k. Therefore, the value of k is 0.
To do this, simply solve the multiplication problem:5.4 x 6.007 = k32.4378 = k
-108
All we can deduce from that information is that k is a positive perfect square. Is that really the whole question? What?
To evaluate 15k when k equals 3, you would substitute the value of k into the expression. Therefore, 15k becomes 15(3), which simplifies to 45. So, when k equals 3, 15k equals 45.
They are +/- 5*sqrt(2)
K+1 is as simplified as it gets. Unless you find the value of K. You can't add a variable and number.
Using the discriminant for a quadratic equation the value of k works out as plus or minus 12.
reactants are favored over products in the reaction