
Concept explainers
(a)
The probability that the particle will be found in the region.
(a)

Answer to Problem 48P
The probability that the particle will be found in the region is
Explanation of Solution
Given:
The one-dimensional box regionis
The particle is in the ground state.
The given region is
Formula used:
The expression for probability for finding the particle in ground stateis given by,
From integral formula,
Calculation:
Let,
By differentiating both sides,
The limit is
The probabilityis calculated as,
Solving further as,
Conclusion:
Therefore, the probability that the particle will be found in the region is
(b)
The probability that the particle will be found in the region.
(b)

Answer to Problem 48P
The probability that the particle will be found in the region is
Explanation of Solution
Given:
The given region is
Formula used:
The expression for probability for finding the particle in ground state is given by,
From integral formula,
Calculation:
Let,
By differentiating both sides,
The limit is
The probability is calculated as,
Solving further as,
Conclusion:
Therefore, the probability that the particle will be found in the region is
(c)
The probability that the particle will be found in the region.
(c)

Answer to Problem 48P
The probability that the particle will be found in the region is
Explanation of Solution
Given:
The given region is
Formula used:
The expression for probability for finding the particle in ground state is given by,
From integral formula,
Calculation:
Let,
By differentiating both sides,
The limit is
The probability is calculated as,
Solving further as,
Conclusion:
Therefore, the probability that the particle will be found in the region is
Want to see more full solutions like this?
Chapter 34 Solutions
EBK PHYSICS FOR SCIENTISTS AND ENGINEER
- need help part a and barrow_forwardComplete the table below for spherical mirrors indicate if it is convex or concave. Draw the ray diagrams S1 10 30 S1' -20 20 f 15 -5 Marrow_forwardA particle with a charge of − 5.20 nC is moving in a uniform magnetic field of (B→=−( 1.22 T )k^. The magnetic force on the particle is measured to be(F→=−( 3.50×10−7 N )i^+( 7.60×10−7 N )j^. Calculate the scalar product v→F→. Work the problem out symbolically first, then plug in numbers after you've simplified the symbolic expression.arrow_forward
- Need help wity equilibrium qestionarrow_forwardneed answer asap please thanks youarrow_forwardA man slides two boxes up a slope. The two boxes A and B have a mass of 75 kg and 50 kg, respectively. (a) Draw the free body diagram (FBD) of the two crates. (b) Determine the tension in the cable that the man must exert to cause imminent movement from rest of the two boxes. Static friction coefficient USA = 0.25 HSB = 0.35 Kinetic friction coefficient HkA = 0.20 HkB = 0.25 M₁ = 75 kg MB = 50 kg P 35° Figure 3 B 200arrow_forward
- A golf ball is struck with a velocity of 20 m/s at point A as shown below (Figure 4). (a) Determine the distance "d" and the time of flight from A to B; (b) Determine the magnitude and the direction of the speed at which the ball strikes the ground at B. 10° V₁ = 20m/s 35º Figure 4 d Barrow_forwardThe rectangular loop of wire shown in the figure (Figure 1) has a mass of 0.18 g per centimeter of length and is pivoted about side ab on a frictionless axis. The current in the wire is 8.5 A in the direction shown. Find the magnitude of the magnetic field parallel to the y-axis that will cause the loop to swing up until its plane makes an angle of 30.0 ∘ with the yz-plane. Find the direction of the magnetic field parallel to the y-axis that will cause the loop to swing up until its plane makes an angle of 30.0 ∘ with the yz-plane.arrow_forwardA particle with a charge of − 5.20 nC is moving in a uniform magnetic field of (B→=−( 1.22 T )k^. The magnetic force on the particle is measured to be (F→=−( 3.50×10−7 N )i^+( 7.60×10−7 N )j^. Calculate the y and z component of the velocity of the particle.arrow_forward
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningClassical Dynamics of Particles and SystemsPhysicsISBN:9780534408961Author:Stephen T. Thornton, Jerry B. MarionPublisher:Cengage Learning
- Modern PhysicsPhysicsISBN:9781111794378Author:Raymond A. Serway, Clement J. Moses, Curt A. MoyerPublisher:Cengage LearningUniversity Physics Volume 3PhysicsISBN:9781938168185Author:William Moebs, Jeff SannyPublisher:OpenStaxPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning





