**IB Physics Practical Specific heat capacity of water**

20/08/2015 · I'm heating a liter of water from 25C to 60C. I'm under the impression that a Calorie (kcal) heats one liter of water by one degree, and so heating one liter by 35 degrees requires 35 Calories.... Use the graph of temperature vs time to find the rate of change of temperature and use this to determine the specific heat capacity of the water. Estimate the uncertainty in m, ΔT/Δt and P then calculate the uncertainty in your value of c.

**IB Physics Practical Specific heat capacity of water**

6/11/2012 · 1. The problem statement, all variables and given/known data Hi. I have an assignment to find the specific heat capacity of water. We did an experiment in class where we used an electric kettle with power output of 1850W-2200W to heat up 1,400g of water (we actually used 1,400 mL of tap water but we were told to assume that the tap water has... This lesson describes specific heat capacity and explains how the specific heat capacity of water helps to maintain a relatively constant temperature in nature.

**IB Physics Practical Specific heat capacity of water**

6/11/2012 · 1. The problem statement, all variables and given/known data Hi. I have an assignment to find the specific heat capacity of water. We did an experiment in class where we used an electric kettle with power output of 1850W-2200W to heat up 1,400g of water (we actually used 1,400 mL of tap water but we were told to assume that the tap water has how to get a bbc micro bit Specific heat represents the amount of heat required to increase the temperature of one gram of a substance by one degree Celsius. q = m * c * DeltaT So, if you know how much heat was added to a certain mass of water to increase its temperature by a number of degrees, you could calculate water's specific heat quite easily. Let's assume 94.1 kJ

**IB Physics Practical Specific heat capacity of water**

Specific heat represents the amount of heat required to increase the temperature of one gram of a substance by one degree Celsius. q = m * c * DeltaT So, if you know how much heat was added to a certain mass of water to increase its temperature by a number of degrees, you could calculate water's specific heat quite easily. Let's assume 94.1 kJ how to find the reflection of a rational function 20/08/2015 · I'm heating a liter of water from 25C to 60C. I'm under the impression that a Calorie (kcal) heats one liter of water by one degree, and so heating one liter by 35 degrees requires 35 Calories.

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### IB Physics Practical Specific heat capacity of water

- IB Physics Practical Specific heat capacity of water
- IB Physics Practical Specific heat capacity of water
- IB Physics Practical Specific heat capacity of water
- IB Physics Practical Specific heat capacity of water

## How To Find Specific Heat Capacity Of Water

6/11/2012 · 1. The problem statement, all variables and given/known data Hi. I have an assignment to find the specific heat capacity of water. We did an experiment in class where we used an electric kettle with power output of 1850W-2200W to heat up 1,400g of water (we actually used 1,400 mL of tap water but we were told to assume that the tap water has

- Use the graph of temperature vs time to find the rate of change of temperature and use this to determine the specific heat capacity of the water. Estimate the uncertainty in m, ΔT/Δt and P then calculate the uncertainty in your value of c.
- Use the graph of temperature vs time to find the rate of change of temperature and use this to determine the specific heat capacity of the water. Estimate the uncertainty in m, ΔT/Δt and P then calculate the uncertainty in your value of c.
- 20/08/2015 · I'm heating a liter of water from 25C to 60C. I'm under the impression that a Calorie (kcal) heats one liter of water by one degree, and so heating one liter by 35 degrees requires 35 Calories.
- Use the graph of temperature vs time to find the rate of change of temperature and use this to determine the specific heat capacity of the water. Estimate the uncertainty in m, ΔT/Δt and P then calculate the uncertainty in your value of c.