One cubic meter of a cumulus contains 6.00x108 water drops, which have a radius of 1.10 x10 m. How many cubic meters of water are in a cylindrical cumulus cloud of height 4.00x10³ m and radius 3.0x10° m? Note: 1.00 cm 1.00 x10" m; V sphere =r°; V cylinder Tr²h. %3D 3 Answer:

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Chapter1: Units, Trigonometry. And Vectors
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### Physics Problems

#### Problem 1:

One cubic meter of a cumulus contains \(6.00 \times 10^8\) water drops, which have a radius of \(1.10 \times 10^{-5}\) m. How many cubic meters of water are in a cylindrical cumulus cloud of height \(4.00 \times 10^3\) m and radius \(3.0 \times 10^3\) m? Note: \(1.00 \, \text{cm} = 1.00 \times 10^{-2} \, \text{m}\); \(V_{\text{sphere}} = \frac{4\pi}{3} r^3\); \(V_{\text{cylinder}} = \pi r^2 h\).

**Answer:** ___________________

Fill in the blank by providing the final answer. In the box below please show how you found the final answer. Include the appropriate sketches.

**Explanation Box:**
*Please provide detailed steps, calculations, and sketches here.*

---

#### Problem 2:

On a wet road, a car with good tires may be able to brake with a constant deceleration of \(2.00 \, \text{m/s}^2\).

(a) How long does such a car, initially traveling at \(10.0 \, \text{m/s}\), take to stop? 
**Answer:** ____________

(b) How far does it travel in this time? 
**Answer:** ____________

Fill in the blanks by providing the final answer. In the box below please show how you found the final answers.

**Explanation Box:**
*Please provide detailed steps, calculations, and sketches here.*
Transcribed Image Text:### Physics Problems #### Problem 1: One cubic meter of a cumulus contains \(6.00 \times 10^8\) water drops, which have a radius of \(1.10 \times 10^{-5}\) m. How many cubic meters of water are in a cylindrical cumulus cloud of height \(4.00 \times 10^3\) m and radius \(3.0 \times 10^3\) m? Note: \(1.00 \, \text{cm} = 1.00 \times 10^{-2} \, \text{m}\); \(V_{\text{sphere}} = \frac{4\pi}{3} r^3\); \(V_{\text{cylinder}} = \pi r^2 h\). **Answer:** ___________________ Fill in the blank by providing the final answer. In the box below please show how you found the final answer. Include the appropriate sketches. **Explanation Box:** *Please provide detailed steps, calculations, and sketches here.* --- #### Problem 2: On a wet road, a car with good tires may be able to brake with a constant deceleration of \(2.00 \, \text{m/s}^2\). (a) How long does such a car, initially traveling at \(10.0 \, \text{m/s}\), take to stop? **Answer:** ____________ (b) How far does it travel in this time? **Answer:** ____________ Fill in the blanks by providing the final answer. In the box below please show how you found the final answers. **Explanation Box:** *Please provide detailed steps, calculations, and sketches here.*
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