At what temperatures will the air have a volume of 165.0 ml and 75 ml respectively?
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At what temperatures will the air have a volume of 165.0 ml and 75 ml respectively? I have included a picture of the temperatures and volumes from my experiment.
We also had to create a graph of volume in ml (y-axis) versus the temperature in K (x-axis). We are to include the slope and intercept and upload the graph. Could you help me? I'm not sure if my graph is correct or not. Thank you!
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- Explain the difference between a rate of change that is positive and one that is negative. Give an example of each. O Consider the ordered pair (x, y) where x is the independent variable and y is the dependent variable. If y increases with the increase in x, then the rate of change of y is positive. Whereas, if y decreases as x increases, then the rate of change is negative. For example, if you consider the speed of a car (y) over time (x), as the car accelerates, the speed increases with increasing time, and the rate of change of its speed is positive. When the car brakes, the rate of change of its speed is negative, because the speed decreases over time. Consider the ordered pair (x, y) where x is the independent variable and y is the dependent variable. If y increases with a decrease in x, then the rate of change of y is positive. Whereas, if y decreases as x decreases, then the rate of change is negative. For example, if you consider the speed of a car (y) over time (x), as the car…A cylinder containing 100.9 cubic centimeter of gas at a pressure of 376 kPa when its temperature is 534 K. Given that its temperature is unchanged when the pressure was increased by a factor of 5.9, Determine the new volume of the gas (In cubic centimeter). Note: Your answer must be in cubic centimeter, however, do not include the unit, just enter the magnitude that corresponds to the final volume in cubic centimeter. Round your answer to 2 decimal points Round your answer to 2 decimal pointsPlease help. This problem involves finding the radius and volume of a platinum atom using its density. Thank you.
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