Ex3.JPG*-Paint 3D Menu Brushes 2D shapes 3D shapes Stickers ģ Text Paint 3D won't be available in the Microsoft Store or receive future updates starting on November 4, 2024. Learn more Select 4 Crop Magic select Mixed reality 3D view Example 6-3. A 460-V, 25-hp, 60-Hz, four-pole, Y-connected induction motor has the following impedances in ohms per phase referred to the stator circuit: R₁ = 0.641 R₂ = 0.332 2 X₁ = 1.106 X₂ = 0.464 X = 26.3 The total rotational losses are 1100 W and are assumed to be constant. The core loss is lumped in with the rotational losses. For a rotor slip of 2.2 percent at the rated voltage and rated frequency, find the motor's (a) Speed (b) Stator current (c) Power factor (d) Peony and Pow (e) Tind and Flood (f) Efficiency +

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter35: Harmonics 916
Section: Chapter Questions
Problem 3RQ: Would a positive-rotating harmonic or a negative-rotating harmonic be more harmful to an induction...
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Example 6-3. A 460-V, 25-hp, 60-Hz, four-pole, Y-connected induction motor has
the following impedances in ohms per phase referred to the stator circuit:
R₁ = 0.641
R₂ = 0.332 2
X₁ = 1.106
X₂ = 0.464 X = 26.3
The total rotational losses are 1100 W and are assumed to be constant. The core loss is
lumped in with the rotational losses. For a rotor slip of 2.2 percent at the rated voltage and
rated frequency, find the motor's
(a) Speed
(b) Stator current
(c) Power factor
(d) Peony and Pow
(e) Tind and Flood
(f) Efficiency
+
Transcribed Image Text:Ex3.JPG*-Paint 3D Menu Brushes 2D shapes 3D shapes Stickers ģ Text Paint 3D won't be available in the Microsoft Store or receive future updates starting on November 4, 2024. Learn more Select 4 Crop Magic select Mixed reality 3D view Example 6-3. A 460-V, 25-hp, 60-Hz, four-pole, Y-connected induction motor has the following impedances in ohms per phase referred to the stator circuit: R₁ = 0.641 R₂ = 0.332 2 X₁ = 1.106 X₂ = 0.464 X = 26.3 The total rotational losses are 1100 W and are assumed to be constant. The core loss is lumped in with the rotational losses. For a rotor slip of 2.2 percent at the rated voltage and rated frequency, find the motor's (a) Speed (b) Stator current (c) Power factor (d) Peony and Pow (e) Tind and Flood (f) Efficiency +
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