PROBLEM An engine running at 200 rpm drives a line shaft by means of a belt. The engine pulley is 750 mm diameter and the pulley on the line shaft being 450 mm. A 900 mm diameter pulley on the line shaft drives a 150 mm diameter pulley keyed to a dynamo shaft. Considering a slip of 2% at each drive., determine the following: Required: Speed of Pulley # 2 on the Line Shaft (N₂) Speed of Pulley # 3 on the Line Shaft (N₁) Speed of Pulley # 4 on the Dynamo Shaft (N4) FIGURE 750 mm Engine shaft 900 mm 450 mm Line shaft With Slip % -150 mm 44 Dynamo shaft SOLUTION Without Slip%

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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PROBLEM
An engine running at 200 rpm drives a line shaft by means of a belt. The engine pulley is 750 mm diameter and the pulley on the line
shaft being 450 mm. A 900 mm diameter pulley on the line shaft drives a 150 mm diameter pulley keyed to a dynamo shaft.
Considering a slip of 2% at each drive., determine the following:
Required:
Speed of Pulley #2 on the Line Shaft (N₂)
Speed of Pulley # 3 on the Line Shaft (N3)
Speed of Pulley # 4 on the Dynamo Shaft (N4)
FIGURE
750 mm
Engine shaft
900 mm
450 mm
Line shaft
With Slip %
150 mm
Dynamo shaft
SOLUTION
Without Slip %
Transcribed Image Text:PROBLEM An engine running at 200 rpm drives a line shaft by means of a belt. The engine pulley is 750 mm diameter and the pulley on the line shaft being 450 mm. A 900 mm diameter pulley on the line shaft drives a 150 mm diameter pulley keyed to a dynamo shaft. Considering a slip of 2% at each drive., determine the following: Required: Speed of Pulley #2 on the Line Shaft (N₂) Speed of Pulley # 3 on the Line Shaft (N3) Speed of Pulley # 4 on the Dynamo Shaft (N4) FIGURE 750 mm Engine shaft 900 mm 450 mm Line shaft With Slip % 150 mm Dynamo shaft SOLUTION Without Slip %
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