In the equation Q equals m plus x t plus c, Q represents the total quantity or value being measured or calculated. t represents the variable or time period being observed or measured. c represents the constant term or the y-intercept, which is the value of Q when t equals zero.
It could represent an unknown variable in an expression or an equation.
Q - 12 = 89 Add 12 to both sides of the equation. Q - 12 + 12 = 89 + 12 Q = 101
The letter Q in blackboard bold is used to represent the set of rational numbers - Q standing for quotient.
amount of heat energy
The p and q variables in the Hardy-Weinberg equation represent the frequencies of the two alleles in a population. The equation is often written as p^2 + 2pq + q^2 = 1, where p and q represent the frequencies of the dominant and recessive alleles, respectively.
In the equation Q equals m plus x t plus c, Q represents the total quantity or value being measured or calculated. t represents the variable or time period being observed or measured. c represents the constant term or the y-intercept, which is the value of Q when t equals zero.
It could represent an unknown variable in an expression or an equation.
Q is used to represent the total heat q is used to represent heat per unit mass. Sometimes the q will have a dot above it to represent rate of heat or a carat above it to indicate specific heat. The same is true for Q.
It is not an equation, but q2 meaning q^2 represents q being multiplied by itself.
p and q represent the frequencies of two types of alleles.
For this problem, we use the equation: C=Q/V; where C=capacitor, Q=charge, V=volts We are trying to find Q; the C and V are given, so we just need to plug the numbers into the equation. C=7.90F V=24.0 V Q=? 7.90=Q/24.0 solve for Q
The correct equation to solve for specific heat is q = mcΔT, where q represents heat energy, m is mass, c is specific heat capacity, and ΔT is the temperature change. Rearranging the equation to solve for specific heat, we get c = q / (mΔT).
The specific heat (c) can be calculated by rearranging the equation as c = Q / (m x T), where Q is the heat energy transferred, m is the mass of the substance, and T is the temperature change.
variable c
The variable c
The triangle is the Classical Greek Capital Letter ' Delta'. 'D' in modern English. 'Delta/D' means the difference in temperature. Q = m DeltaT c Energy (joule) = mass(kg) X (Difference in Temperature)T(K) X specific heat capacity. Ignoring the other terms, if the starting temperature is 273 K and the final temperature is 298K, then 'DeltaT' = ( 298-273 = 25K) Note the temperature scale is Kelvin(K) because this eliminates the use of 'Zero/ 0oC'. in the system.