6. [-/1 Points] DETAILS COLFUNPHYS1 29.P.013. MY NOTES Find the de Broglie wavelength of a baseball of mass 0.15 kg moving at a speed of 25.3 m/s (57 mi/hr). 7. [-/2 Points] DETAILS COLFUNPHYS1 29.P.014. MY NOTES The uncertainty in position of a stationary 3.5 kg block is roughly an atomic diameter, or about 10-10 m. (a) What is the minimum uncertainty in the block's velocity? (b) How far might the block move in 7 years as a result of this velocity? 8. [-/1 Points] DETAILS COLFUNPHYS1 29.P.015. MY NOTES PRACTICE The uncertainty in position of an electron is 5.15 x 10-10 m. Find the minimum uncertainty in the electron's velocity. 9. [-/1 Points] DETAILS COLFUNPHYS1 29.P.019. MY NOTES PRACTICE A How many quantum states are possible for an atomic electron for which n-6 and m- 07 10. [0/1 Points] DETAILS PREVIOUS ANSWERS COLFUNPHYS1 29.P.020. MY NOTES PRACTICE ANOTHER How many quantum states are possible for an atomic electron for which n = 27 1 x PRA PRAC

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Question 7
**Physics Homework Questions from WebAssign**

**Date and Time:**
11:53 AM, Thursday, June 16

---

### 6. [–/1 Points]

**COLFUNPHYS1 29.P.013**

**Question:**  
Find the de Broglie wavelength of a baseball of mass 0.15 kg moving at a speed of 25.3 m/s (57 mi/hr).

**Response Box:**
[  ]

---

### 7. [–/2 Points]

**COLFUNPHYS1 29.P.014**

**Question:**  
The uncertainty in position of a stationary 3.5 kg block is roughly an atomic diameter, or about \(10^{-10} \) m.  

(a) What is the minimum uncertainty in the block’s velocity?  
**Response Box:**  
[  ]

(b) How far might the block move in 7 years as a result of this velocity?  
**Response Box:**  
[  ]

---

### 8. [–/1 Points]

**COLFUNPHYS1 29.P.015**

**Question:**  
The uncertainty in position of an electron is \(5.15 \times 10^{-10} \) m. Find the minimum uncertainty in the electron’s velocity.

**Response Box:**
[  ]

---

### 9. [–/1 Points]

**COLFUNPHYS1 29.P.019**

**Question:**  
How many quantum states are possible for an atomic electron for which \(n = 6\) and \(m = 0\)?

**Response Box:**
[  ]

---

### 10. [0/1 Points]

**COLFUNPHYS1 29.P.020**

**Question:**  
How many quantum states are possible for an atomic electron for which \(n = 2\)?

**Response Box:**  
[ Incorrect response marked ] 1  
[ Correct response input box ]

**Buttons:**
- DETAILS
- PREVIOUS ANSWERS
- MY NOTES
- PRACTICE ANOTHER
---

Feel free to use this information to complete your assignments or extend your knowledge on the relevant topics!
Transcribed Image Text:**Physics Homework Questions from WebAssign** **Date and Time:** 11:53 AM, Thursday, June 16 --- ### 6. [–/1 Points] **COLFUNPHYS1 29.P.013** **Question:** Find the de Broglie wavelength of a baseball of mass 0.15 kg moving at a speed of 25.3 m/s (57 mi/hr). **Response Box:** [ ] --- ### 7. [–/2 Points] **COLFUNPHYS1 29.P.014** **Question:** The uncertainty in position of a stationary 3.5 kg block is roughly an atomic diameter, or about \(10^{-10} \) m. (a) What is the minimum uncertainty in the block’s velocity? **Response Box:** [ ] (b) How far might the block move in 7 years as a result of this velocity? **Response Box:** [ ] --- ### 8. [–/1 Points] **COLFUNPHYS1 29.P.015** **Question:** The uncertainty in position of an electron is \(5.15 \times 10^{-10} \) m. Find the minimum uncertainty in the electron’s velocity. **Response Box:** [ ] --- ### 9. [–/1 Points] **COLFUNPHYS1 29.P.019** **Question:** How many quantum states are possible for an atomic electron for which \(n = 6\) and \(m = 0\)? **Response Box:** [ ] --- ### 10. [0/1 Points] **COLFUNPHYS1 29.P.020** **Question:** How many quantum states are possible for an atomic electron for which \(n = 2\)? **Response Box:** [ Incorrect response marked ] 1 [ Correct response input box ] **Buttons:** - DETAILS - PREVIOUS ANSWERS - MY NOTES - PRACTICE ANOTHER --- Feel free to use this information to complete your assignments or extend your knowledge on the relevant topics!
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