We have blown up a large spherical party balloon and tied it off. We also realize that the pressure inside the balloon is balanced by the elastic force exerted by the rubberized material. If the pressure increases, the balloon will expand until the new, larger pressure is balanced by a more tightly stretched balloon skin. We also recognize that the balloon contains a fixed amount of air. Finally we realize that since we are talking about pressure, volume and temperature, the ideal gas law might play a part in the behavior. If this is the case, we need to use the absolute temperature in our deliberations. By conducting a series of tests, we can relate the circumference of the balloon to the temperature inside it. Create a proper plot of the data and add a properly formatted power trendline.
We have blown up a large spherical party balloon and tied it off. We also realize that the pressure inside the balloon is balanced by the elastic force exerted by the rubberized material. If the pressure increases, the balloon will expand until the new, larger pressure is balanced by a more tightly stretched balloon skin. We also recognize that the balloon contains a fixed amount of air. Finally we realize that since we are talking about pressure, volume and temperature, the ideal gas law might play a part in the behavior. If this is the case, we need to use the absolute temperature in our deliberations. By conducting a series of tests, we can relate the circumference of the balloon to the temperature inside it. Create a proper plot of the data and add a properly formatted power trendline.
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Please fallow the instructions and data is attached. Please do the graph and put the points. Please
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