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Why was there a need to invent linear equation in two variables?

If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.


How can you find an equation for the temperature in degrees Celsius for a given temperature in degrees Fahrenheit by finding the function and?

To convert a temperature from degrees Fahrenheit (F) to degrees Celsius (C), you can use the linear equation ( C = \frac{5}{9}(F - 32) ). This equation is derived from the relationship between the two temperature scales, where 32°F corresponds to 0°C and the intervals differ by a factor of 1.8. By substituting any Fahrenheit value into this equation, you can find the corresponding temperature in Celsius.


Is the relationship linear between density and temperature?

The relationship between density and temperature is linear. In a thermal expansion, density will decrease and temperature increases and vice versa.


What is the relationship between a linear equation and its line on a graph?

Since the geraph is a picture of the equation, it's almost a father and son relationship. The equation begets the graph. The graph, in turn, admires and looks up to the equation.


What equation do you use to find ohms?

Use the equation that shows the relationship between ohms and the properties that are known.

Related Questions

What is an equation to show the relationship between the kelvin and Celsius's scales?

The relationship between the Kelvin and Celsius scales is given by the equation: [Kelvin = Celsius + 273.15] This equation shows how to convert temperature values between the two scales.


What is the relationship between waterstate pressure and temperature?

The relationship between water vapor pressure and temperature is direct and proportional. As temperature increases, the vapor pressure of water also increases. Conversely, as temperature decreases, the vapor pressure of water decreases. This relationship is described by the Clausius-Clapeyron equation.


What does the Clausius-Clapeyron equation graph reveal about the relationship between temperature and vapor pressure?

The Clausius-Clapeyron equation graph shows that as temperature increases, vapor pressure also increases. This relationship is represented by a curved line on the graph.


What is the empirical equation that describes the relationship between temperature and pressure in a gas system?

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.


An equation that expresses a relationship between measurements?

A formula is an equation that expresses a relationship between measurements.


What does the Arrhenius equation graph reveal about the relationship between reaction rate and temperature?

The Arrhenius equation graph shows that as temperature increases, the reaction rate also increases. This relationship is represented by a curve that slopes upwards, indicating that higher temperatures lead to faster reaction rates.


Which equation shows relationship between kelvin and celsius temperature scales?

K to C Formula: C = K - 273.15 C to K Formula: K = C + 273.15


Which equation shows the relationship between kelvin and Celsius temperature scales?

K to C Formula: C = K - 273.15 C to K Formula: K = C + 273.15


What is the relationship between temperature and enthalpy change for an ideal gas?

The relationship between temperature and enthalpy change for an ideal gas is described by the equation H nCpT, where H is the enthalpy change, n is the number of moles of the gas, Cp is the molar heat capacity at constant pressure, and T is the change in temperature. This equation shows that the enthalpy change is directly proportional to the temperature change for an ideal gas.


Does the temperature have to be in Kelvin for the Arrhenius equation?

Yes, the temperature in the Arrhenius equation must be in Kelvin. Temperature in Kelvin is required to ensure that the relationship between temperature and reaction rate constant is accurately represented.


What is the relationship between heat transfer (h), specific heat capacity (c), and temperature change (delta T)?

The relationship between heat transfer (h), specific heat capacity (c), and temperature change (T) is described by the equation: h c T. This equation shows that the amount of heat transferred is directly proportional to the specific heat capacity of the material and the temperature change.


What is the relationship between the change in enthalpy (H), specific heat capacity (Cp), and temperature change (T) in a system?

The relationship between the change in enthalpy (H), specific heat capacity (Cp), and temperature change (T) in a system is described by the equation H Cp T. This equation shows that the change in enthalpy is directly proportional to the specific heat capacity and the temperature change in the system.