5- A storm cloud A storm cloud and the ground represent the plates of a capacitor. During a storm, the capacitor has a potential difference of 1.00 x 108 V between its plates and a load of 50.0 C. A lightning bolt releases 1.00% of the capacitor's energy to a tree on the ground. How much sap from the tree can be evaporated? Model the sap as water initially at 30.0 °C. Water has a specific heat of 4186 J/kg.°C, boiling point of 100 °C and latent heat of vaporization of 2, 26 × 106 J/kg.
5- A storm cloud A storm cloud and the ground represent the plates of a capacitor. During a storm, the capacitor has a potential difference of 1.00 x 108 V between its plates and a load of 50.0 C. A lightning bolt releases 1.00% of the capacitor's energy to a tree on the ground. How much sap from the tree can be evaporated? Model the sap as water initially at 30.0 °C. Water has a specific heat of 4186 J/kg.°C, boiling point of 100 °C and latent heat of vaporization of 2, 26 × 106 J/kg.
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![5- A storm cloud A storm cloud and the ground represent the plates of a capacitor.
During a storm, the capacitor has a potential difference of 1.00 x 108 V between its
plates and a load of 50.0 C. A lightning bolt releases 1.00% of the capacitor's energy
to a tree on the ground. How much sap from the tree can be evaporated? Model
the sap as water initially at 30.0 °C. Water has a specific heat of 4186 J/kg.°C,
boiling point of 100 °C and latent heat of vaporization of 2, 26 × 106 J/kg.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3fcd5359-592a-4bd6-922e-3dc18946b19b%2Ffe0c75de-0362-4470-94c0-10fa1f4073f7%2Fyvgu1z_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5- A storm cloud A storm cloud and the ground represent the plates of a capacitor.
During a storm, the capacitor has a potential difference of 1.00 x 108 V between its
plates and a load of 50.0 C. A lightning bolt releases 1.00% of the capacitor's energy
to a tree on the ground. How much sap from the tree can be evaporated? Model
the sap as water initially at 30.0 °C. Water has a specific heat of 4186 J/kg.°C,
boiling point of 100 °C and latent heat of vaporization of 2, 26 × 106 J/kg.
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