Three solid cylindrical rods are welded together to form the compound axial member shown in the figure. The compound axial member is attached to a fixed support at A. Each rod has an elastic modulus of E = 44 GPa. Use the following values for the rod lengths and areas: L₁ = 1510 mm, L₂ = 1580 mm, L3= 1280 mm, A₁ = 270 mm², A₂ = 130 mm², and A3 = 85 mm². What magnitude of external load P is needed to displace end D a distance of up = 90 mm to the right? L₁ (1) B L2 (2) C L3 D
Three solid cylindrical rods are welded together to form the compound axial member shown in the figure. The compound axial member is attached to a fixed support at A. Each rod has an elastic modulus of E = 44 GPa. Use the following values for the rod lengths and areas: L₁ = 1510 mm, L₂ = 1580 mm, L3= 1280 mm, A₁ = 270 mm², A₂ = 130 mm², and A3 = 85 mm². What magnitude of external load P is needed to displace end D a distance of up = 90 mm to the right? L₁ (1) B L2 (2) C L3 D
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![Three solid cylindrical rods are welded together to form the compound axial member shown in the figure. The compound axial
member is attached to a fixed support at A. Each rod has an elastic modulus of E = 44 GPa. Use the following values for the rod
lengths and areas: L₁ = 1510 mm, L₂ = 1580 mm, L3 = 1280 mm, A₁ = 270 mm², A₂ = 130 mm², and A3 = 85 mm². What
magnitude of external load P is needed to displace end D a distance of up = 90 mm to the right?
L3
A
L₁
(1)
B
L2
(2)
C
(3)
D](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6dd59859-340b-486c-9ab1-93f8c6d30a33%2F91f06262-2704-4db3-b2fa-db2783e5d352%2Fvshsx3k_processed.png&w=3840&q=75)
Transcribed Image Text:Three solid cylindrical rods are welded together to form the compound axial member shown in the figure. The compound axial
member is attached to a fixed support at A. Each rod has an elastic modulus of E = 44 GPa. Use the following values for the rod
lengths and areas: L₁ = 1510 mm, L₂ = 1580 mm, L3 = 1280 mm, A₁ = 270 mm², A₂ = 130 mm², and A3 = 85 mm². What
magnitude of external load P is needed to displace end D a distance of up = 90 mm to the right?
L3
A
L₁
(1)
B
L2
(2)
C
(3)
D
![Find the relationship between 8₁, the elongation of rod (1), and the internal tensile force, F₁, in rod (1). Assume 8, is a positive
value in units of mm and F₁ is a positive value in units of kN. So, the answer you enter for the ratio (8₁/F₁) must be in units of (
mm/kN).
8₁
F₁
=
i
! mm/kN](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6dd59859-340b-486c-9ab1-93f8c6d30a33%2F91f06262-2704-4db3-b2fa-db2783e5d352%2Ffnc3spf_processed.png&w=3840&q=75)
Transcribed Image Text:Find the relationship between 8₁, the elongation of rod (1), and the internal tensile force, F₁, in rod (1). Assume 8, is a positive
value in units of mm and F₁ is a positive value in units of kN. So, the answer you enter for the ratio (8₁/F₁) must be in units of (
mm/kN).
8₁
F₁
=
i
! mm/kN
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