The equation ( w = 24c ) indicates that the weight ( w ) of the truck increases linearly with the number of crates ( c ) of tomatoes it carries. Specifically, for every crate added, the total weight increases by 24 pounds. This means if you know the number of crates, you can easily calculate the total weight by multiplying the number of crates by 24. For example, if there are 5 crates, the truck would weigh 120 pounds.
Let ( x ) represent the total number of tomatoes in the garden. According to the problem, one third of the tomatoes are ripe, and we know there are 6 ripe tomatoes. The equation can be set up as follows: [ \frac{1}{3}x = 6 ] To find the total number of tomatoes, you can solve for ( x ) by multiplying both sides by 3: [ x = 18 ]
(x2 + any number) + (y2 + any number) = 81
2n-4
y = -|a(x + b)|
Let the number of rows of tomatoes be (3x) and the number of rows of onions be (5x). The total number of rows is (3x + 5x = 8x). Given that Sparky has 16 rows in total, we set up the equation (8x = 16), which gives (x = 2). Therefore, the number of rows of tomatoes is (3x = 3 \times 2 = 6).
N= term number, your equation would be: 2N+2
The word that describes a value making an equation true is "solution." In the context of an equation, a solution is a specific number that, when substituted for a variable, satisfies the equation. For example, in the equation ( x + 2 = 5 ), the solution is ( x = 3 ).
All properly balanced chemical equations fit that criteria: they must have the same number of atoms of each element on each side of the "yield" arrow. Balancing an equation can be achieved by using whole number coefficients as needed. This upholds the Law of Conservation of Mass, which states that matter cannot be created or destroyed.
x2 -y2 =16 This is an equation that describes your problem. We can write this equation as (1/16)x2 -(1/16)y2 =1 You may recognize this as the equation whose graph is a hyperbola. So there are an infinite number of solutions.
The empirical equation that describes the relationship between temperature and pressure in a gas system is known as the ideal gas law, which is expressed as PV nRT. In this equation, P represents pressure, V is volume, n is the number of moles of gas, R is the gas constant, and T is temperature.
The Arrhenius equation describes a number of temperature dependent chemical reactions. These comprise not just the forward and reverse reactions, but also other reactions that are thermally influenced such as diffusion processes.
To find the unit rate comparing the number of ounces of tomatoes to ounces of spaghetti, divide the number of ounces of tomatoes by the number of ounces of spaghetti. For example, if you have 12 ounces of tomatoes and 8 ounces of spaghetti, the unit rate would be 12 ounces of tomatoes / 8 ounces of spaghetti = 1.5. This means there are 1.5 ounces of tomatoes for every ounce of spaghetti.