Assignment Writing service https://www.solvezone.in/ en Solved Assignment for NIBM in Executive MBA https://www.solvezone.in/solved-assignment-nibm-executive-mba <span>Solved Assignment for NIBM in Executive MBA</span> <div><p><strong>Assignments of One Year Executive MBA</strong></p> <p><strong>Semester - I</strong></p> <p><strong>Total Marks :100</strong></p> <p><strong>1. Students are requested to go through the instructions carefully.<br /> 2. The Assignment is a part of the internal assessment.<br /> 3. Marks will be awarded for each Assignment, which will be added to the total marks.<br /> Assignments carry equal marks.<br /> 4. Assignments should submit in your &amp;#39;portal&amp;#39; on/before the &amp;#39;completion date&amp;#39;<br /> mentioned.</strong></p> <p>&nbsp;</p> <p><br /> 1. Principles and Practices of Management<br /> Explain the scope of Management.</p> <p><br /> 2. Human Resources Management<br /> For the purposes of manpower planning, what are the main dimension to be<br /> taken into consideration? Explain.</p> <p><br /> 3. Financial Management<br /> Working capital is needed till the firm gets cash on a sale of finished products.<br /> Explain the factors on which it depends.</p> <p><br /> 4. Marketing Management<br /> Explain&nbsp;integrated marketing concept, the elements of marketing mix and<br /> optimum marketing mix..</p> <p><br /> 5. Organizational Behaviour<br /> What are the chief applications of learning theories which can be adopted by<br /> the manager? Discuss.</p> <p><br /> 6. Principles of Economics<br /> Describe the basic assumptions of Economics?</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Mon, 08/24/2020 - 11:14</span> <div class="display-price uc-product-3697 product-info"><span class="uc-price">₹1,180.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3696326</div> </div> <div> <div>Price</div> <div>₹1,000.00</div> </div> <form class="uc-product-add-to-cart-form-3697 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3697" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3697" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-ype-pvcs2cbi1kahvi-in1lsmiy-nxsuprhor-4clo0" type="hidden" name="form_build_id" value="form-YPE_PvcS2CbI1kAhVI_in1lSmiY-nxSupRhOR_4clo0" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3697" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3697" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--2"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3697" type="submit" id="edit-submit-3697" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Executive MBA</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Mon, 24 Aug 2020 05:44:08 +0000 Avinash 3697 at https://www.solvezone.in https://www.solvezone.in/solved-assignment-nibm-executive-mba#comments What did the goods symbolise as per the principles of psychoanalysis in this episode? Identify and explain. https://www.solvezone.in/what-did-goods-symbolise-principles-psychoanalysis-episode-identify-and-explain <span>What did the goods symbolise as per the principles of psychoanalysis in this episode? Identify and explain.</span> <div><p style="margin-bottom:11px"><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><b><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">Instructions:</span></span></b></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><b><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">Kindly read each qu</span></span></b><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">estion carefully and answer any 5 out of the 6 questions (Answer any 5). Each question carries 5 marks and the total marks for this test is 25 marks. Out of the 5 marks, there are 2 marks for identifying and defining the principle of psychoanalysis and 3 marks for linking the same with the context of the documentary. The last date for submission is 19th Aug 2020, 2200 hours.</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">Kindly note that there will be a deduction of 2 marks per day after the submission date.</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">1. What did the goods symbolise as per the principles of psychoanalysis in this episode? Identify and explain</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">2. What defense mechanisms did you see in this episode? Mention atleast 3</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">3. What does the title signify?</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">4. How were the principles of psychoanalysis used in Britain?</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">5. What is the structure of psyche? Which part of the psyche the British politicians appeal to and how?</span></span></span></span></p> <p><span style="font-size:12pt"><span style="font-family:&quot;Times New Roman&quot;,serif"><span lang="EN-IN" style="font-size:13.5pt"><span style="color:black">6. What were the personality polls used for?</span></span></span></span></p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Mon, 08/17/2020 - 10:44</span> <div class="display-price uc-product-3643 product-info"><span class="uc-price">₹0.00</span></div> <div> <div>SKU</div> <div>3642541</div> </div> <div> <div>Price</div> <div>₹0.00</div> </div> <form class="uc-product-add-to-cart-form-3643 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3643" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3643" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-4eft8gmkt-hse99b0240ofqycxqo8byxv28ij4gg9-y" type="hidden" name="form_build_id" value="form-4eFT8gMKT-hSE99b0240OFQycxqo8byXv28Ij4Gg9_Y" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3643" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3643" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--3"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3643" type="submit" id="edit-submit-3643" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>psychoanalysis</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Mon, 17 Aug 2020 05:14:39 +0000 Avinash 3643 at https://www.solvezone.in https://www.solvezone.in/what-did-goods-symbolise-principles-psychoanalysis-episode-identify-and-explain#comments A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transfor https://www.solvezone.in/50-hz-30-mva-11-kv-reactance-10-supplies-power-three-identical-motors-through-transformer-shown <span>A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transfor</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:54</span> <div class="display-price uc-product-3620 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3619360</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3620 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3620" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3620" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-kf-ooss-in-d-6qb0xeccdaudfli4-76hyx9or7olkc" type="hidden" name="form_build_id" value="form-Kf-Ooss_In-d-6qB0xECCdAUdflI4-76Hyx9Or7olKc" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3620" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3620" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--4"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3620" type="submit" id="edit-submit-3620" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:24:32 +0000 Avinash 3620 at https://www.solvezone.in https://www.solvezone.in/50-hz-30-mva-11-kv-reactance-10-supplies-power-three-identical-motors-through-transformer-shown#comments Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA, X=10%These generators are interconnected as shown in the figure. The generators are provided with bus bar reactor, each having https://www.solvezone.in/particulars-three-generators-b-and-c-are-followsga-11-kv-40-mva-x10gb-11-kv-60-mva-x12gb-11-kv-25 <span>Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA, X=10%These generators are interconnected as shown in the figure. The generators are provided with bus bar reactor, each having </span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:49</span> <div class="display-price uc-product-3619 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3618583</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3619 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3619" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3619" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-8njbhmmijrnup5gazapueqbkvo4b-nkk-psk2kmam6g" type="hidden" name="form_build_id" value="form-8njbhMmIjrNuP5gAzApUEQbKvo4b-NKK-PsK2KMam6g" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3619" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3619" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--5"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3619" type="submit" id="edit-submit-3619" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:19:30 +0000 Avinash 3619 at https://www.solvezone.in https://www.solvezone.in/particulars-three-generators-b-and-c-are-followsga-11-kv-40-mva-x10gb-11-kv-60-mva-x12gb-11-kv-25#comments A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure https://www.solvezone.in/generating-station-has-four-generators-each-rated-11-kv-100-mva-and-each-having-sub-transient <span>A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:47</span> <div class="display-price uc-product-3618 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3617881</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3618 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3618" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3618" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-zy01vkkjnb-ujhptcsvjoenhygp2zn3lbzl5hcx6khq" type="hidden" name="form_build_id" value="form-Zy01VkkJNB-UJhpTCSVJoenhyGp2zN3Lbzl5Hcx6KhQ" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3618" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3618" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--6"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3618" type="submit" id="edit-submit-3618" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:17:18 +0000 Avinash 3618 at https://www.solvezone.in https://www.solvezone.in/generating-station-has-four-generators-each-rated-11-kv-100-mva-and-each-having-sub-transient#comments A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers thr https://www.solvezone.in/power-system-has-four-generators-shown-figure-below-two-generators-rated-15-mva-have-reactance-15 <span>A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers thr</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:45</span> <div class="display-price uc-product-3617 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3616288</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3617 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3617" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3617" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-jwncgswrrclyfnez0r4ou0-ndr4rfivbaaz-cvog4-y" type="hidden" name="form_build_id" value="form-jWNCGsWrrclyfNEz0R4Ou0-nDr4RfIvbaAZ-CvOG4-Y" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3617" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3617" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--7"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3617" type="submit" id="edit-submit-3617" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:15:08 +0000 Avinash 3617 at https://www.solvezone.in https://www.solvezone.in/power-system-has-four-generators-shown-figure-below-two-generators-rated-15-mva-have-reactance-15#comments Two generators rated 11kv, 5MVA  having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having https://www.solvezone.in/two-generators-rated-11kv-5mva-having-5-reactance-are-interconnected-transmission-line-length-50km <span>Two generators rated 11kv, 5MVA  having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:42</span> <div class="display-price uc-product-3616 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3615408</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3616 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3616" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3616" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-oeussugcgmlldoer3zulzmgpsrp3ag0k6xxr2ef47pq" type="hidden" name="form_build_id" value="form-OeussUGcgmLLDoEr3zuLZmGpSRP3ag0k6xxr2ef47PQ" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3616" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3616" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--8"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3616" type="submit" id="edit-submit-3616" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:12:42 +0000 Avinash 3616 at https://www.solvezone.in https://www.solvezone.in/two-generators-rated-11kv-5mva-having-5-reactance-are-interconnected-transmission-line-length-50km#comments Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance of 4%. Calculate the fault current https://www.solvezone.in/two-11kv-three-phase-mva-generators-having-sub-transient-reactance-3-and-2-respectively-operate <span>Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance of 4%. Calculate the fault current</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:38</span> <div class="display-price uc-product-3615 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3614513</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3615 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3615" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3615" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-x0yj01fmvnsngytqjicdmp5tz-joufidjdjkwhcg2ec" type="hidden" name="form_build_id" value="form-x0YJ01FmvNsnGytqJicDmP5Tz_jOuFIdjDJKWhCG2ec" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3615" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3615" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--9"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3615" type="submit" id="edit-submit-3615" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:08:43 +0000 Avinash 3615 at https://www.solvezone.in https://www.solvezone.in/two-11kv-three-phase-mva-generators-having-sub-transient-reactance-3-and-2-respectively-operate#comments A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are https://www.solvezone.in/three-phase-10mva-11kv-alternator-has-10-sub-transient-reactance-if-symmetrical-fault-occurs-its <span>A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:35</span> <div class="display-price uc-product-3614 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3613353</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3614 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3614" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3614" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-9saeg2e3ekgovprd8quel-powwqyrhyez07ojylugci" type="hidden" name="form_build_id" value="form-9saEg2E3eKgOVPrd8qUeL-PoWWqYRhyEz07OjylugcI" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3614" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3614" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--10"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3614" type="submit" id="edit-submit-3614" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:05:28 +0000 Avinash 3614 at https://www.solvezone.in https://www.solvezone.in/three-phase-10mva-11kv-alternator-has-10-sub-transient-reactance-if-symmetrical-fault-occurs-its#comments A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are: https://www.solvezone.in/single-phase-8mva-33-11kv-transformer-has-equivalent-impedance-referred-lv-side-1j9-ohms-choosing <span> A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</span> <div><p>Power system II</p> <p>2.&nbsp; A 100 MVA, 10kv equipment has an impedance of 1 ohm. Find it's per unit and percentage impedance. It now the base values are chosen as 20 MVA, kV, find the new percentage impedance.</p> <p>3. A single-phase 8MVA, 33/11kV transformer has equivalent impedance referred to LV side as (1+j9) ohms. choosing the transformer rating as the base values, the per-unit equivalent impedance referred to the LV side and HV side respectively are:</p> <p>4. A three-phase 10MVA, 11KV alternator has 10% sub transient reactance. If a symmetrical fault occurs at its terminals, the short circuit MVA and the current respectively are:</p> <p>5.Two 11Kv, three-phase, % MVA generators having sub transient reactance of 3% and 2% respectively operate in parallel. Suppose the power loaded through an 11/220 kv, 10MVA transformer has a percentage equivalent reactance&nbsp;of 4%. Calculate the fault current and fault MVA for three phase occurring on the Ht side of the transformer as shown in the figure. Also calculate the fault current supplied by each generator.</p> <p>6. Two generators rated 11kv, 5MVA&nbsp; having 5% reactance are interconnected by a transmission line of length 50km. The reactance of the line is 0.4 ohm/phase/km. generators are connected to the line through a set up transformer rated 11/33kV , 8MVA and having 4% reactance. A three phase fault occurs at the middle of the transmission line. Calculate the fault MVA and current.&nbsp; Neglect the load current.</p> <p>7. A power system has four generators is shown in the figure below. Two generators rated 15 MVA have a reactance of 15% and the other two rated 20MVA have 20% reactance. The generators are connected to station bus bars. Power is drawn by the load centers through two power transformers rated 50MVA each having percentage reactance of 10%. It is required to design circuit breakers with rating that are to be provided at the LT and HT side of the transformer. The CB rating at the HV side ad LV side of the transformer respectively are:</p> <p>8. A generating station has four generators; each rated 11 kV, 100 MVA and each having a sub transient reactance of 10%. A sectionalized bus reactor is placed as shown in the figure. A three phase fault occurred at a point near the bus as shown in the figure. a) Determine fault level %X=0 ohms. b) Determine the X value in ohms to limit the fault level to 3000 MVA *</p> <p>9. Particulars of three generators A, B and C are as follows:GA: 11 kV, 40 MVA, X=10%GB: 11 kV, 60 MVA, X=12%GB: 11 kV, 25 MVA,</p> <p>X=10%These generators are</p> <p>interconnected as shown in the figure. The generators are provided</p> <p>with bus bar reactor, each having Xre=10% reactance based on their ratings (Generator A). A feeder directly connected to generator A as shown in the figure has an impedance of Z=0.05+j0.1</p> <p>ohms/phase. Estimate the short circuit MVA if a symmetrical fault occurs at the far end of the feeder.</p> <p>&nbsp;</p> <p>10. A 50 Hz, 30 MVA, 11 kV reactance of 10% supplies power to three identical motors through a transformer as shown in the figure. Each motor is rated for 8 MVA, 6.6 kV with subtransient and transient reactance of jo.15 and jo.25 pu respectively. The transformer is rated for 30 MVA, 11kV/6.6 kV and leakage reactance 8%. The motor busbar voltage is 6.6 kV when a three phase fault takes place at F. Determine the subtransient current</p> <p>generator has subtransient</p> </div> <span><span lang="" about="/user/433" typeof="schema:Person" property="schema:name" datatype="">Avinash</span></span> <span>Tue, 08/11/2020 - 12:33</span> <div class="display-price uc-product-3613 product-info"><span class="uc-price">₹1,770.00</span><span class="price-suffixes"></span></div> <div> <div>SKU</div> <div>3612553</div> </div> <div> <div>Price</div> <div>₹1,500.00</div> </div> <form class="uc-product-add-to-cart-form-3613 uc-product-add-to-cart-form" data-drupal-selector="uc-product-add-to-cart-form-3613" action="/taxonomy/term/1708/feed" method="post" id="uc-product-add-to-cart-form-3613" accept-charset="UTF-8"> <input autocomplete="off" data-drupal-selector="form-h-s2kv6en8-wyywu0u3jqc96k2biipufchyag12iaaq" type="hidden" name="form_build_id" value="form-H-S2kv6en8-WYYWu0U3JqC96K2biiPUfchyaG12iAaQ" /> <input data-drupal-selector="edit-uc-product-add-to-cart-form-3613" type="hidden" name="form_id" value="uc_product_add_to_cart_form_3613" /> <div class="input-group"><div class="input-group-append"><div data-drupal-selector="edit-actions" class="form-actions js-form-wrapper form-wrapper" id="edit-actions--11"><input class="btn btn-primary mb-2 mr-3 btn btn-primary button js-form-submit form-submit" data-drupal-selector="edit-submit-3613" type="submit" id="edit-submit-3613" name="op" value="Add to cart" /> </div> </div></div> </form> <section> </section> <div> <div>University</div> <div>Assignment Writing service</div> </div> <div> <div>Subject Code</div> <div>Power system II</div> </div> <div> <div>Type</div> <div><a href="/taxonomy/term/1127" hreflang="en">Assignment</a></div> </div> <div> <div>Cost</div> <div>₹0.00</div> </div> Tue, 11 Aug 2020 07:03:26 +0000 Avinash 3613 at https://www.solvezone.in https://www.solvezone.in/single-phase-8mva-33-11kv-transformer-has-equivalent-impedance-referred-lv-side-1j9-ohms-choosing#comments