Extrapolation and Trend Prediction
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A chemist investigated the reaction rate of a reactant, Substance Y, at various initial concentrations. The initial rate of reaction, , in millimoles per liter per second (), was recorded for each concentration, , in millimoles per liter (), at a constant temperature of . The results are presented in the table below:
| Initial Concentration () | Initial Rate of Reaction () |
|---|---|
Based on the trend shown in the table, what would be the expected initial rate of reaction, in , if the initial concentration of Substance Y is increased to ?
A student investigated the electrical properties of a negative temperature coefficient (NTC) thermistor. The thermistor was placed in a temperature-controlled water bath, and its electrical resistance, (in kilohms, ), was measured at various temperatures, (in degrees Celsius, ). The data from this experiment are presented in the table below.
| Temperature (, ) | Resistance (, ) |
|---|---|
| 10 | 48.0 |
| 30 | 24.0 |
| 50 | 12.0 |
| 70 | 6.0 |
Based on the trend shown in the table, what is the predicted electrical resistance, in , of the thermistor at a temperature of ?
A student measured the speed of sound in a chamber filled with pure carbon dioxide () gas at various temperatures. The measured speed of sound, in meters per second (), at each temperature, in degrees Celsius (), is shown in the table below:
| Temperature () | Speed of Sound () |
|---|---|
Assuming the speed of sound continues to change at a constant rate with respect to temperature, what is the predicted speed of sound in gas, in meters per second (), at a temperature of ?
Aerodynamic drag force () acts on vehicles as they move through the air. A group of students measured the drag force, in newtons (), acting on a scale model of a sports car in a wind tunnel at various wind velocities (), in meters per second (). The data from their trials are recorded in the table below:
| Velocity (, ) | Drag Force (, ) |
|---|---|
Based on the trend shown in the table, what is the expected aerodynamic drag force, in newtons (), acting on the scale model when the wind velocity is ?
Geologists drilled a deep borehole into the Earth's crust at a research site and measured the rock temperature at various depths. The recorded temperatures are shown in the table below:
| Depth () | Temperature () |
|---|---|
Assuming the temperature continues to increase linearly with depth at the same rate observed between and , what will the rock temperature, in degrees Celsius (), be at a depth of ?