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Concept explainers
(a)
Plot of wave function as a function of
(a)
![Check Mark](/static/check-mark.png)
Answer to Problem 74P
The wave function was plotted as a function of
Explanation of Solution
Write the given wave function of the electron.
Here,
Write the formula to calculate the probability of finding a particle in a certain range.
Here,
Refer equation (I) and plot the wave function as a function of
Figure 1 below shows the plot of wave function.
Conclusion:
The wave function was plotted as a function of
(b)
Plot of probability density as a function of
(b)
![Check Mark](/static/check-mark.png)
Answer to Problem 74P
The probability density was plotted as a function of
Explanation of Solution
Write the given wave function of the electron.
Here,
Write the formula to calculate the probability of finding a particle in a certain range.
Here,
Refer equation (II) and plot the probability density as a function of
Figure 2 below shows the plot of wave function.
Conclusion:
The probability density was plotted as a function of
(c)
To show that
(c)
![Check Mark](/static/check-mark.png)
Answer to Problem 74P
The
Explanation of Solution
Write the given wave function of the electron.
Here,
For the wave function to be a reasonable wave function, there are set of condition.
The
As
The
The
Conclusion:
The
(d)
To normalize the wave function.
(d)
![Check Mark](/static/check-mark.png)
Answer to Problem 74P
The normalization constant of the given wave function is
Explanation of Solution
Write the given wave function of the electron.
Here,
Write the condition for normalized wave function.
The wave function is symmetric. Thus re-write the above condition.
Substitute equation (I) in the above equation.
Conclusion:
The normalization constant of the given wave function is
(e)
The probability of finding the electron in the range
(e)
![Check Mark](/static/check-mark.png)
Answer to Problem 74P
The probability of finding the particle in the range
Explanation of Solution
Refer section (d) and write the given normalized wave function of the electron.
Here,
Write the formula to calculate the probability of finding a particle in a certain range.
Here,
Refer equation (II) in equation (III) to determine probability in range
Conclusion:
The probability of finding the particle in the range
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Chapter 28 Solutions
Bundle: Principles of Physics: A Calculus-Based Text, 5th + WebAssign Printed Access Card for Serway/Jewett's Principles of Physics: A Calculus-Based Text, 5th Edition, Multi-Term
- 5.48 ⚫ A flat (unbanked) curve on a highway has a radius of 170.0 m. A car rounds the curve at a speed of 25.0 m/s. (a) What is the minimum coefficient of static friction that will prevent sliding? (b) Suppose that the highway is icy and the coefficient of static friction between the tires and pavement is only one-third of what you found in part (a). What should be the maximum speed of the car so that it can round the curve safely?arrow_forward5.77 A block with mass m₁ is placed on an inclined plane with slope angle a and is connected to a hanging block with mass m₂ by a cord passing over a small, frictionless pulley (Fig. P5.74). The coef- ficient of static friction is μs, and the coefficient of kinetic friction is Mk. (a) Find the value of m₂ for which the block of mass m₁ moves up the plane at constant speed once it is set in motion. (b) Find the value of m2 for which the block of mass m₁ moves down the plane at constant speed once it is set in motion. (c) For what range of values of m₂ will the blocks remain at rest if they are released from rest?arrow_forward5.78 .. DATA BIO The Flying Leap of a Flea. High-speed motion pictures (3500 frames/second) of a jumping 210 μg flea yielded the data to plot the flea's acceleration as a function of time, as shown in Fig. P5.78. (See "The Flying Leap of the Flea," by M. Rothschild et al., Scientific American, November 1973.) This flea was about 2 mm long and jumped at a nearly vertical takeoff angle. Using the graph, (a) find the initial net external force on the flea. How does it compare to the flea's weight? (b) Find the maximum net external force on this jump- ing flea. When does this maximum force occur? (c) Use the graph to find the flea's maximum speed. Figure P5.78 150 a/g 100 50 1.0 1.5 0.5 Time (ms)arrow_forward
- 5.4 ⚫ BIO Injuries to the Spinal Column. In the treatment of spine injuries, it is often necessary to provide tension along the spi- nal column to stretch the backbone. One device for doing this is the Stryker frame (Fig. E5.4a, next page). A weight W is attached to the patient (sometimes around a neck collar, Fig. E5.4b), and fric- tion between the person's body and the bed prevents sliding. (a) If the coefficient of static friction between a 78.5 kg patient's body and the bed is 0.75, what is the maximum traction force along the spi- nal column that W can provide without causing the patient to slide? (b) Under the conditions of maximum traction, what is the tension in each cable attached to the neck collar? Figure E5.4 (a) (b) W 65° 65°arrow_forwardThe correct answers are a) 367 hours, b) 7.42*10^9 Bq, c) 1.10*10^10 Bq, and d) 7.42*10^9 Bq. Yes I am positve they are correct. Please dont make any math errors to force it to fit. Please dont act like other solutiosn where you vaugley state soemthing and then go thus, *correct answer*. I really want to learn how to properly solve this please.arrow_forwardI. How many significant figures are in the following: 1. 493 = 3 2. .0005 = | 3. 1,000,101 4. 5.00 5. 2.1 × 106 6. 1,000 7. 52.098 8. 0.00008550 9. 21 10.1nx=8.817arrow_forward
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