Concept explainers
Calculate in newtons the weight of a 2.5-kg melon. What is its weight in pounds?
The weight of a melon in Newton and pounds.
Answer to Problem 25A
The weight of the melon in Newton is
The weight of the melon in pounds is
Explanation of Solution
Given:
A melon has a mass of 2.5-kg
Formula used The weight of an object is the force it experiences due to the force of gravity exerted by earth on it. It can be expressed as,
Here, mass is expressed in kilograms and the acceleration due to gravity on earth is considered which is
Now, pounds are a measure of the quantity of matter on the surface of earth. It is related to kilogram as,
Calculation The mass of the melon is given as 2.5-kg. Thus, the weight in Newton can be obtained as,
Now, the weight of the melon in pounds is given by,
Conclusion :
The weight of melon in Newton is 24.5 N and in pounds is 1.136 lbs.
Chapter 3 Solutions
CONCEPTUAL PHYSICS-W/PRACTICING PHYSICS
Additional Science Textbook Solutions
Chemistry: Structure and Properties (2nd Edition)
Biology: Life on Earth (11th Edition)
Cosmic Perspective Fundamentals
Anatomy & Physiology (6th Edition)
Organic Chemistry (8th Edition)
Chemistry: An Introduction to General, Organic, and Biological Chemistry (13th Edition)
- Fractions 1. Covert 5/7 to a decimal 2. 5/7 x 3/8 3. 2/5 divided 4/9 4. covert 37/ 19 to a decimalarrow_forwardthis is an exam past paper question that i need help with becuase i am reviewing not a graded assignmentarrow_forwardsunny (1) -13- end. One box contains nothing inside; one has a piece of resistance wire between the terminals You are provided with three sealed identical matchboxes labelled A, B and C, with terminals at each and the other, a semi-conductor diode. Plan and design an experiment to identify the contents of each box. You are provided with the following elements for your apparatus: Ammeter Low voltage power supply Connecting wires Labelled circuit diagram Draw a well-labelled circuit diagram to show how you would connect the apparatus listed above to each matchbox. (3 maarrow_forward
- RAD127 Radiographic Equipment and Computers SI Units in Radiography Ch. 1 & 2 Instructions: Provide the units for each of the following in full and short forms 1. Mass - kg, 9 or (1b)) ・ 2. Energy, Work - W = FD,J 3. Air kerma -(Gya) 4. Absorbed Dose- 5. Effective Dose J/kg (94+) jlkg J/kg, Sv 6. Radioactivity - 5-1, Bq 7. Weight 8. Time 9. Force 10. Power B9 wt, wt-mg, N -(s) F= ma, N, OR 1b. (JIS), P= work It = Fdlt, Jarrow_forwardanswer 1-8arrow_forward1 . Solve the equation 2/7=y/3 for y. 2. Solve the equation x/9=2/6 for x. 3. Solve the equation z + 4 = 10 This is algebra and the equation is fraction.arrow_forward
- two satellites are in circular orbits around the Earth. Satellite A is at an altitude equal to the Earth's radius, while satellite B is at an altitude equal to twice the Earth's radius. What is the ratio of their periods, Tb/Taarrow_forwardFresnel lens: You would like to design a 25 mm diameter blazed Fresnel zone plate with a first-order power of +1.5 diopters. What is the lithography requirement (resolution required) for making this lens that is designed for 550 nm? Express your answer in units of μm to one decimal point. Fresnel lens: What would the power of the first diffracted order of this lens be at wavelength of 400 nm? Express your answer in diopters to one decimal point. Eye: A person with myopic eyes has a far point of 15 cm. What power contact lenses does she need to correct her version to a standard far point at infinity? Give your answer in diopter to one decimal point.arrow_forwardParaxial design of a field flattener. Imagine your optical system has Petzal curvature of the field with radius p. In Module 1 of Course 1, a homework problem asked you to derive the paraxial focus shift along the axis when a slab of glass was inserted in a converging cone of rays. Find or re-derive that result, then use it to calculate the paraxial radius of curvature of a field flattener of refractive index n that will correct the observed Petzval. Assume that the side of the flattener facing the image plane is plano. What is the required radius of the plano-convex field flattener? (p written as rho )arrow_forward
- 3.37(a) Five free electrons exist in a three-dimensional infinite potential well with all three widths equal to \( a = 12 \, \text{Å} \). Determine the Fermi energy level at \( T = 0 \, \text{K} \). (b) Repeat part (a) for 13 electrons. Book: Semiconductor Physics and Devices 4th ed, NeamanChapter-3Please expert answer only. don't give gpt-generated answers, & please clear the concept of quantum states for determining nx, ny, nz to determine E, as I don't have much idea about that topic.arrow_forward3.37(a) Five free electrons exist in a three-dimensional infinite potential well with all three widths equal to \( a = 12 \, \text{Å} \). Determine the Fermi energy level at \( T = 0 \, \text{K} \). (b) Repeat part (a) for 13 electrons. Book: Semiconductor Physics and Devices 4th ed, NeamanChapter-3Please expert answer only. don't give gpt-generated answers, & please clear the concept of quantum states for determining nx, ny, nz to determine E, as I don't have much idea about that topic.arrow_forwardNo chatgpt pls will upvotearrow_forward
- College PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningUniversity Physics (14th Edition)PhysicsISBN:9780133969290Author:Hugh D. Young, Roger A. FreedmanPublisher:PEARSONIntroduction To Quantum MechanicsPhysicsISBN:9781107189638Author:Griffiths, David J., Schroeter, Darrell F.Publisher:Cambridge University Press
- Physics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningLecture- Tutorials for Introductory AstronomyPhysicsISBN:9780321820464Author:Edward E. Prather, Tim P. Slater, Jeff P. Adams, Gina BrissendenPublisher:Addison-WesleyCollege Physics: A Strategic Approach (4th Editio...PhysicsISBN:9780134609034Author:Randall D. Knight (Professor Emeritus), Brian Jones, Stuart FieldPublisher:PEARSON