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Friday, February 20, 2026

Proposal Execution in Electrical Engineering (A Practical Framework for Competitive & Profitable Bidding)

Proposal Execution in Electrical Engineering

A Practical Framework for Competitive & Profitable Bidding ⚡

In EPC and industrial projects, proposal execution is far more than submitting a price.
It is a technical-commercial strategy exercise that determines whether a project will be profitable — or problematic.

A well-structured electrical proposal ensures:

✅ Accurate Bill of Materials (BOM)
✅ Realistic engineering manhour estimation
✅ Clear scope definition
✅ Full technical compliance
✅ Risk identification and mitigation
✅ Margin protection


๐ŸŽฏ Objective of Proposal Execution

During the bidding stage, the electrical team must focus on:

• Preparing a reliable BOM
• Estimating engineering & drafting manhours
• Evaluating procurement & logistics cost
• Defining precise scope boundaries
• Ensuring compliance with ITB requirements
• Identifying technical & commercial risks

A strong proposal is built on clarity, completeness, and controlled assumptions.


๐Ÿ“‘ ITB (Invitation to Bid) Review – The Foundation Step

A detailed ITB review is the most critical activity in proposal engineering.

1️⃣ Document Verification

Ensure availability and completeness of:

  • Electrical Design Basis

  • Single Line Diagram (SLD)

  • Load List

  • Technical Specifications

  • Scope of Supply

  • Plot Plan

  • Equipment Datasheets

  • Hazardous Area Classification

  • Soil Resistivity Report

  • Approved Vendor List (AVL)

๐Ÿ“Œ Missing inputs directly lead to inaccurate costing and risk exposure.


2️⃣ Scope Definition & Battery Limits

✔ Clearly define scope boundaries
✔ Identify client / PMC / contractor / vendor responsibilities
✔ Establish battery limits and interface points
✔ Highlight exclusions explicitly

Unclear scope today becomes a variation claim tomorrow.


3️⃣ Discrepancy & Conflict Check

Cross-verify consistency between:

  • Specifications

  • Drawings

  • Datasheets

  • Codes & Standards

✔ Confirm document precedence hierarchy
✔ Verify latest standard revisions
✔ Record deviations clearly

Early detection prevents commercial disputes during execution.


4️⃣ Identification of High-Cost Impact Items

Certain design philosophies significantly influence:

๐Ÿ’ฐ CAPEX
๐Ÿ‘ท Engineering manhours
๐Ÿ›’ Procurement budget
๐Ÿ— Construction effort

Examples include:

  • N+1 / N+N redundancy

  • Explosion-proof (Ex) equipment

  • High IP ratings

  • Special corrosion-resistant materials

  • Custom-built panels

Early identification protects margins and avoids underestimation.


๐Ÿ’ก Additional Strategic Considerations

๐Ÿ”„ Value Engineering

Propose technically equivalent alternatives where feasible:

✔ Compare lifecycle cost
✔ Highlight energy efficiency benefits
✔ Suggest optimized routing or sizing

Value engineering improves competitiveness without compromising quality.


๐Ÿญ Brownfield Projects & Tie-Ins

For existing facilities:

✔ Identify tie-in locations
✔ Evaluate available load capacity
✔ Assess shutdown requirements
✔ Consider operational constraints

Brownfield risks must be priced carefully.


❓ Pre-Bid Clarifications

Raise structured pre-bid queries for:

  • Scope ambiguities

  • Specification conflicts

  • Commercial conditions

  • Design assumptions

Assumption-based bidding increases risk exposure.


๐Ÿ”ฎ Future Expansion Consideration

Provision for:

✔ Spare feeders and breakers
✔ Transformer & UPS spare capacity
✔ Space for future panels
✔ Cable tray spare capacity

Designing for expansion improves long-term plant value.


๐ŸŒ Environmental & Special Requirements

Account for:

✔ Coastal / marine corrosion protection
✔ Tropicalization
✔ High ambient temperature
✔ Seismic requirements
✔ Software licensing
✔ Higher IP / Ex ratings

Environmental conditions significantly influence cost and equipment selection.


๐ŸŽ“ Training & Documentation Scope

Include in proposal:

✔ Vendor training sessions
✔ Site training programs
✔ O&M training modules
✔ Number of trainees & duration
✔ Documentation & manuals

Training scope must be clearly quantified to avoid hidden costs.


๐Ÿ† Conclusion

A successful electrical proposal is a balance of:

๐Ÿ”น Technical depth
๐Ÿ”น Commercial awareness
๐Ÿ”น Risk identification
๐Ÿ”น Clear documentation
๐Ÿ”น Strategic value engineering

Winning a project is important —
but winning it profitably and sustainably is what defines strong proposal engineering.


๐Ÿ’ฌ What challenges do you commonly face during proposal preparation — unclear scope, late vendor inputs, or aggressive timelines?
Let’s exchange insights.


https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg RRB JE, SSC AE/JE UPSSSC JE, SSC JE, CIVIL ENGINEERING MCQs, ELECTICAL ENGINEERING MCQs, preavious year quesion papers, dmrc, lmrc, drdo,rrb ntpc, ntpc, pgcil, dsssb, states board, GATE IES EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA

Electrical Interconnection Schedule (EIS) (The Backbone of Accurate Site Execution & Commissioning ๐Ÿ“˜)

Electrical Interconnection Schedule (EIS)

The Backbone of Accurate Site Execution & Commissioning ๐Ÿ“˜

In any industrial project, especially in substations, oil & gas plants, or large infrastructure facilities, the Electrical Interconnection Schedule (EIS) is one of the most critical execution documents.

A well-prepared EIS ensures that what is designed on paper is wired correctly on site — without confusion, delays, or costly rework.


๐Ÿ”Ž What is an Electrical Interconnection Schedule?

An Electrical Interconnection Schedule is a structured document that clearly defines:

From Side – Origin of the cable (panel/equipment/terminal)
To Side – Destination of the cable
✅ Terminal block details (both ends)
✅ Core number & ferrule numbering
✅ Cable size & cable type
✅ Cable classification (Power / Control / Instrumentation / Communication)

In simple terms, it is the bridge between design drawings and physical wiring.


๐Ÿ“ฅ Inputs Required to Prepare an Accurate EIS

To develop a complete and error-free Interconnection Schedule, the following documents are essential:

๐Ÿ”น Cable Schedule
๐Ÿ”น Single Line Diagram (SLD)
๐Ÿ”น Control & Schematic Drawings
๐Ÿ”น Terminal Block Layout Drawings
๐Ÿ”น Motor / Transformer Wiring Diagrams
๐Ÿ”น Vendor GA & Terminal Drawings
๐Ÿ”น Instrument Hook-up Diagrams (if applicable)

๐Ÿ“Œ Without these inputs, discrepancies during commissioning are almost guaranteed.


๐Ÿ“Š Typical Data Included in a Professional EIS

A structured Interconnection Schedule should include:

๐Ÿ”น Cable Tag Number
๐Ÿ”น From Equipment / Panel Name
๐Ÿ”น From Terminal Number
๐Ÿ”น To Equipment / Panel Name
๐Ÿ”น To Terminal Number
๐Ÿ”น Signal / Function Description
๐Ÿ”น Cable Size (e.g., 2.5 sq.mm, 4C x 4 sq.mm)
๐Ÿ”น Cable Type (XLPE, FRLS, Armoured, Shielded, etc.)
๐Ÿ”น Number of Cores
๐Ÿ”น Core Identification
๐Ÿ”น Ferrule Numbers (both ends)
๐Ÿ”น Remarks (Spare, Loop, Future Use, etc.)

This level of detail eliminates ambiguity at site.


๐Ÿ›  Step-by-Step Approach to Prepare an EIS

1️⃣ Identify All Interconnections

✔ Extract all cable tags from Cable Schedule
✔ Capture cable size, type, number of cores
✔ Define From & To locations clearly
✔ Classify as power/control/instrumentation


2️⃣ Assign Core Details

✔ Refer to cable manufacturer datasheet
✔ Follow standard phase/color coding (R, Y, B, N, PE)
✔ Maintain consistent core numbering philosophy
✔ Ensure spare cores are clearly identified


3️⃣ Add Terminal & Ferrule Details

✔ Use control schematic diagrams
✔ Refer terminal block layout drawings
✔ Assign From & To terminal numbers accurately
✔ Define ferrule numbering systematically

๐Ÿ“Œ Terminal numbering must be frozen before issue for construction.


4️⃣ Final Verification & Cross-Check

✔ Add signal description clearly
✔ Include remarks (Spare / Loop / Future / Interposing Relay etc.)
✔ Cross-check with vendor terminal drawings
✔ Ensure no duplication or mismatch


๐ŸŽฏ Why is Interconnection Schedule So Critical?

⚡ Eliminates site wiring confusion
⚡ Reduces termination errors
⚡ Speeds up commissioning
⚡ Improves inspection & testing accuracy
⚡ Ensures alignment between design & execution
⚡ Simplifies troubleshooting & maintenance

A well-prepared EIS can save hundreds of man-hours during termination and commissioning.


๐Ÿ’ก Practical Site Tips

๐Ÿ”ธ Always maintain revision control
๐Ÿ”ธ Freeze terminal numbering before issuing for construction
๐Ÿ”ธ Clearly mark spare cores
๐Ÿ”ธ Coordinate closely with C&I and automation teams
๐Ÿ”ธ Verify vendor terminal drawings before final release
๐Ÿ”ธ Conduct pre-termination review with site engineers

๐Ÿ“Œ Remember:
A small mistake in terminal or ferrule numbering can delay commissioning significantly.


๐Ÿ’ฌ What interconnection challenges have you faced on site — mismatched terminals, undocumented changes, vendor deviations?

Let’s exchange practical experiences.


https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg RRB JE, SSC AE/JE UPSSSC JE, SSC JE, CIVIL ENGINEERING MCQs, ELECTICAL ENGINEERING MCQs, preavious year quesion papers, dmrc, lmrc, drdo,rrb ntpc, ntpc, pgcil, dsssb, states board, GATE IES EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA

Procurement of Electrical Equipment (A Structured Engineering Approach for Industrial Projects)

Procurement of Electrical Equipment

A Structured Engineering Approach for Industrial Projects

In industrial projects, procurement is not merely purchasing — it is a disciplined engineering process that directly affects:

✔️ Project cost
✔️ Delivery schedule
✔️ Technical performance
✔️ Safety compliance
✔️ Long-term reliability

A systematic procurement cycle minimizes risk, avoids disputes, and ensures technical integrity.

Below is a refined, industry-focused breakdown of the Electrical Equipment Procurement Lifecycle ๐Ÿ‘‡


1️⃣ Identification of Requirement

๐Ÿ”น Clearly define the equipment
๐Ÿ”น Confirm application and functional requirement
๐Ÿ”น Validate project necessity and urgency
๐Ÿ”น Align with design basis & client specification

๐Ÿ“Œ Clarity at this stage prevents scope gaps and commercial conflicts later.


2️⃣ Engineering Definition & Documentation

Before raising any requisition:

๐Ÿ”น Prepare Equipment Datasheet
๐Ÿ”น Develop Inspection & Test Plan (ITP)
๐Ÿ”น Define Vendor Documentation Requirements
๐Ÿ”น Align with SLD, Load List, Cable Schedule, Protection Philosophy
๐Ÿ”น Specify environmental & hazardous area requirements

๐Ÿ“Œ Strong engineering inputs = Accurate and compliant procurement.


3️⃣ Preparation of Material Requisition (MR)

A comprehensive MR typically includes:

✔️ Scope of Supply & Scope of Services
✔️ Applicable Codes & Standards
✔️ Electrical Design Basis (Attachment)
✔️ Detailed Equipment Specification
✔️ Datasheet & ITP
✔️ Vendor Documentation Schedule
✔️ Spare Parts & Special Tools
✔️ Painting & Surface Protection Specification
✔️ Approved Vendor List (AVL)
✔️ Commercial & Delivery Terms

๐Ÿ“Œ A well-prepared MR significantly reduces bid-stage deviations.


4️⃣ Technical Query (TQ) Stage

๐Ÿ”น Respond to vendor technical clarifications
๐Ÿ”น Issue formal clarifications/addendums if required
๐Ÿ”น Ensure all bidders are aligned technically

๐Ÿ“Œ Transparent and documented communication ensures fair comparison.


5️⃣ Technical & Commercial Bid Evaluation

๐Ÿ” Technical Evaluation

  • Review compliance against specification

  • Examine deviations carefully

  • Assess performance guarantees

  • Evaluate past experience & manufacturing capability

  • Mark Accept / Not Accept / Conditional

๐Ÿ’ฐ Commercial Evaluation

  • Conducted by Procurement Team

  • Price comparison (L1/L2 analysis)

  • Delivery schedule review

  • Payment terms & LD clause assessment

๐Ÿ“Œ Never compromise technical integrity for short-term cost savings.


6️⃣ Vendor Selection

Final selection based on:

✔️ Technical compliance
✔️ Commercial competitiveness
✔️ Delivery capability
✔️ After-sales support

Balanced decision = Quality + Cost Optimization + Reliability.


7️⃣ Purchase Order (PO) Release

PO should clearly define:

๐Ÿ”น PO Number & Reference
๐Ÿ”น Final Scope of Supply
๐Ÿ”น Price & Payment Terms
๐Ÿ”น Delivery Schedule
๐Ÿ”น Liquidated Damages (LD) Clause
๐Ÿ”น Documentation & Drawing Requirements
๐Ÿ”น Inspection & FAT requirements

๐Ÿ“Œ PO clarity avoids future contractual disputes.


8️⃣ Vendor Drawing Review & Approval

Engineering review cycle includes:

✔️ GA drawings
✔️ Schematic diagrams
✔️ Bill of materials
✔️ Protection settings
✔️ Foundation & cable entry details

Manufacturing should begin only after formal approval.


9️⃣ Manufacturing & Inspection

๐Ÿ”น Stage inspections as per ITP
๐Ÿ”น Factory Acceptance Test (FAT)
๐Ÿ”น Compliance verification
๐Ÿ”น Witness inspection (if required by client)

๐Ÿ“Œ Early inspection reduces site-level surprises.


๐Ÿ”Ÿ Logistics & Dispatch

๐Ÿ”น Proper packing & preservation
๐Ÿ”น Shock and moisture protection
๐Ÿ”น Dispatch clearance
๐Ÿ”น Document submission (Invoice, Packing List, Test Certificates)


1️⃣1️⃣ Material Receipt at Site

๐Ÿ”น Physical verification against PO
๐Ÿ”น Damage & transit inspection
๐Ÿ”น Review of documentation
๐Ÿ”น Storage as per preservation guidelines


1️⃣2️⃣ Installation & Commissioning

The final stage where engineering intent becomes operational reality:

✔️ Proper installation
✔️ Pre-commissioning checks
✔️ Testing & energization
✔️ Performance validation


๐ŸŽฏ Why Structured Procurement Matters

✔️ Reduces technical deviations
✔️ Prevents vendor disputes
✔️ Ensures statutory compliance
✔️ Improves project predictability
✔️ Protects long-term asset performance

Electrical procurement is not a commercial activity alone —
it is engineering risk management in action.


๐Ÿ’ฌ What challenges do you commonly face in electrical procurement?
Technical deviations? Vendor delays? FAT issues? Documentation gaps?

Let’s exchange practical experiences.


https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg RRB JE, SSC AE/JE UPSSSC JE, SSC JE, CIVIL ENGINEERING MCQs, ELECTICAL ENGINEERING MCQs, preavious year quesion papers, dmrc, lmrc, drdo,rrb ntpc, ntpc, pgcil, dsssb, states board, GATE IES EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA

nstallation Types of Lighting Fixtures Engineering Perspective for Industrial & Commercial Projects

Installation Types of Lighting Fixtures

Engineering Perspective for Industrial & Commercial Projects

Lighting installation is not just about illumination — it directly influences:

✔️ Electrical safety
✔️ Maintainability
✔️ Structural integrity
✔️ Hazardous area compliance
✔️ Overall project quality

Selection of mounting type depends on application, environment, structural availability, and safety classification.

Below is a structured, industry-oriented classification ๐Ÿ‘‡


๐Ÿข Indoor Lighting Fixture Mounting

1️⃣ Wall Mounted

๐Ÿ”น Fixed directly on walls using brackets or base plates
๐Ÿ”น Common in corridors, staircases, utility rooms, electrical rooms
๐Ÿ”น Easy access for maintenance
๐Ÿ”น Suitable for decorative as well as industrial luminaires
๐Ÿ”น Proper anchoring & cable concealment required


2️⃣ Recessed Mounted

๐Ÿ”น Installed within false ceiling or slab cut-out
๐Ÿ”น Provides clean, flush, and aesthetic appearance
๐Ÿ”น Widely used in offices, control rooms, clean rooms
๐Ÿ”น Requires coordination with ceiling grid & HVAC
๐Ÿ”น Accurate cut-out dimensions essential


3️⃣ Surface / Ceiling Mounted

๐Ÿ”น Fixed directly to slab or ceiling surface
๐Ÿ”น Ideal where false ceiling is not provided
๐Ÿ”น Common in industrial sheds & service areas
๐Ÿ”น Requires proper anchor bolts & load consideration
๐Ÿ”น Vibration check necessary in heavy industrial zones


4️⃣ METSEC / Strut Channel Mounted

๐Ÿ”น Mounted on metal framing systems (e.g., below HVAC ducts or cable trays)
๐Ÿ”น Suitable for industrial plants & service corridors
๐Ÿ”น Offers installation flexibility and alignment adjustment
๐Ÿ”น Requires coordination with piping, fire fighting & HVAC systems


๐ŸŒฆ️ Outdoor & Hazardous Area Lighting

Outdoor installations demand additional engineering considerations:

✔️ IP protection rating
✔️ Explosion-proof / flameproof compliance (Zone 1 / Zone 2)
✔️ Structural strength & corrosion protection
✔️ Wind load calculations
✔️ Proper earthing & bonding


5️⃣ Pole Mounted

๐Ÿ”น Installed on GI or steel poles
๐Ÿ”น Used for roadway & plant area illumination
๐Ÿ”น Requires foundation design & cable routing through pole
๐Ÿ”น Earthing of pole mandatory


6️⃣ Bracket Mounted

๐Ÿ”น Fixed on structures using angle brackets
๐Ÿ”น Suitable for perimeter, faรงade & yard lighting
๐Ÿ”น Requires structural load & vibration analysis
๐Ÿ”น Proper sealing of cable entry needed


7️⃣ Pendant Mounted

๐Ÿ”น Suspended using conduit, rod, or chain
๐Ÿ”น Common in hazardous and process areas
๐Ÿ”น Requires flameproof glands & sealing fittings
๐Ÿ”น Proper support to avoid mechanical stress


8️⃣ LCS Pole Mounted

๐Ÿ”น Mounted on Local Control Station poles
๐Ÿ”น Used near equipment clusters for operator visibility
๐Ÿ”น Must not obstruct maintenance access
๐Ÿ”น Coordination required with instrument panels


9️⃣ Flood Light Installation

๐Ÿ”น Mounted on structures for wide-area illumination
๐Ÿ”น Adjustable aiming for optimized lux distribution
๐Ÿ”น Requires lux level calculation & glare control
๐Ÿ”น Proper heat dissipation & IP protection essential


๐Ÿ”Ÿ High Mast Lighting

๐Ÿ”น Used for large open areas (tank farms, yards, refineries)
๐Ÿ”น Mounted on tall mast structures (20–40 m typical)
๐Ÿ”น Equipped with winch mechanism for maintenance
๐Ÿ”น Designed considering wind speed & dynamic loading
๐Ÿ”น Requires aviation obstruction clearance in some cases


1️⃣1️⃣ Aviation Obstruction Lighting

๐Ÿ”น Installed on tall structures, chimneys, flare stacks
๐Ÿ”น Ensures aircraft visibility compliance
๐Ÿ”น Must follow DGCA / ICAO regulations
๐Ÿ”น Requires dual power supply & monitoring in critical facilities


๐ŸŽฏ Key Engineering Considerations

✔️ Proper earthing and bonding
✔️ Short-circuit protection coordination
✔️ Voltage drop calculation
✔️ Structural compatibility
✔️ Hazardous area certification
✔️ Ease of maintenance access
✔️ Compliance with project specifications & standards


๐Ÿ’ฌ Discussion Point

Which lighting mounting type do you most frequently use in your projects — industrial, commercial, or hazardous area?

Let’s exchange practical experiences and best practices.


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Electrical–Civil Interface in Oil & Gas Projects

Electrical–Civil Interface in Oil & Gas Projects

In Oil & Gas facilities, Electrical and Civil disciplines cannot work in isolation.
Substations, cable networks, equipment foundations, and earthing systems are deeply interconnected.

Poor interface coordination can result in:
❌ Costly rework
❌ Construction delays
❌ Safety non-compliance
❌ Space and accessibility issues

A structured interface approach ensures safety, constructability, and long-term reliability.

Below is a refined breakdown of key Electrical–Civil interfaces ๐Ÿ‘‡


1️⃣ Substation & Electrical Building Works

๐Ÿข Buildings & Layouts

Civil/Architectural teams design:

  • Substation buildings

  • Control rooms

  • MCC rooms

  • EDG (Emergency Diesel Generator) rooms

  • Electrical equipment shelters

๐Ÿ“ Layouts must align with:
✔️ Electrical clearance requirements (front, rear, side access)
✔️ Cable entry/exit points
✔️ Future expansion provisions
✔️ Hazardous area zoning (if applicable)


⚙️ Foundations & Structural Works

Civil designs foundations for:

  • Power transformers

  • Capacitor banks

  • Outdoor switchgear

  • PDC/Packaged substations

Electrical must provide:
✔️ Equipment GA drawings
✔️ Static & dynamic load data
✔️ Anchor bolt details
✔️ Vibration criteria (for rotating equipment)


๐Ÿ”ฅ Safety & Environmental Design

  • Fire-rated walls & blast-resistant structures

  • Oil containment bund walls & soak pits for transformers

  • Drainage slopes for oil spillage management

  • Hazardous area compliance

๐ŸŒฌ️ HVAC & Ventilation:
Electrical provides heat dissipation data → Civil/HVAC designs ventilation & pressurization system accordingly.


2️⃣ Cable Routing & Underground Works

๐Ÿ›ค️ Underground Infrastructure

Coordination required for:

  • Cable trenches

  • Duct banks

  • Manholes

  • Earth pit locations

Electrical provides:
✔️ Cable sizes & quantities
✔️ Tray loading (weight per meter)
✔️ Sleeve/conduit opening details
✔️ Minimum bending radius requirements

Civil designs:
✔️ RCC trenches & encasement
✔️ Structural supports for trays
✔️ Sand bedding & protective tiles
✔️ Trench covers & drainage slope

Early coordination prevents clashes with piping, structural steel, and underground utilities.


3️⃣ Earthing & Lightning Protection

⚡ Electrical defines:

  • Earth grid layout

  • Earth electrode locations

  • Bonding points for structures

  • Lightning protection down conductors

Civil provides:
✔️ Soil resistivity data
✔️ Excavation & backfilling support
✔️ Structural bonding points

๐ŸŒฉ️ Lightning protection must integrate with building structural steel without compromising civil integrity.


4️⃣ Equipment & Pole Foundations

Civil designs foundations for:

  • High mast poles

  • Street lighting poles

  • Transformers

  • Marshalling kiosks

  • Field panels

Electrical provides:
✔️ Wind load data
✔️ Equipment dimensions
✔️ Weight & center of gravity
✔️ Anchor bolt templates

Improper coordination here often leads to misalignment and rework.


5️⃣ Temporary & Miscellaneous Interfaces

๐Ÿ“‘ Soil resistivity report for earthing design
⚡ Temporary power supply for construction phase
๐Ÿชœ Scaffolding and supports for temporary lighting & DB installation
๐Ÿšง Safe access platforms for cable pulling and equipment maintenance
๐ŸŒŠ Drainage & flood level considerations for outdoor equipment


๐ŸŽฏ Why Electrical–Civil Interface Is Critical

✔️ Ensures statutory & safety compliance
✔️ Optimizes plant layout & space utilization
✔️ Avoids underground and structural clashes
✔️ Improves constructability
✔️ Reduces rework & cost overruns
✔️ Enhances multidisciplinary collaboration

In Oil & Gas projects — where hazardous zones, heavy equipment, and strict compliance standards exist — interface management is not optional; it is a project success factor.


๐Ÿ’ฌ If you're working in Oil & Gas (Electrical or Civil), what coordination challenges have you encountered on site or during design reviews? Let’s exchange insights.


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Parallel Redundant Configuration of AC UPS (N+N Philosophy)

Parallel Redundant Configuration of AC UPS (N+N Philosophy)

In critical power systems, downtime is unacceptable.
Parallel redundancy is not just a feature — it is a reliability architecture designed to eliminate single points of failure and ensure continuous operation.

Let’s understand the operating philosophy of a Parallel Redundant (N+N) UPS System ๐Ÿ‘‡


๐Ÿ—️ System Overview

The configuration consists of Two Independent UPS Modules operating in N+N redundancy.

Each UPS module typically includes:

✔️ Mains Input
✔️ Bypass Input
✔️ Input Breaker
✔️ Input Isolation Transformer
✔️ Rectifier / Charger
✔️ Battery Bank with MCCB
✔️ Inverter
✔️ Output Isolation Transformer
✔️ Static Switch
✔️ Maintenance Bypass
✔️ Output feeding ACDB

๐Ÿ‘‰ Both UPS systems are capable of supplying the entire critical load independently.


๐Ÿ”„ Modes of Operation

1️⃣ Normal Operation

Power Flow:
Mains → Rectifier → DC Bus → Inverter → Clean AC Output

  • Battery bank remains in float charging mode

  • Static switch stays synchronized and ready

  • Load sharing may be equal (parallel mode) or independent depending on configuration

✔️ Clean, regulated power delivered to ACDB
✔️ Full redundancy available


2️⃣ Battery Mode (Mains Failure)

When mains supply fails:

  • Rectifier stops

  • Battery bank feeds the DC bus

  • Inverter continues supplying AC output without interruption

⚡ Zero transfer time to load
✔️ No break power supply to critical equipment

This is essential for mission-critical infrastructure.


3️⃣ Static Bypass Operation

If any of the following occurs:

  • Inverter overload

  • Internal UPS fault

  • Downstream short circuit

The Static Switch transfers the load to bypass supply within milliseconds.

⚡ Typical transfer time: < 4 ms

✔️ Ensures continuity
✔️ Protects inverter from damage


4️⃣ Maintenance Bypass Mode

Used when servicing or replacing a UPS module.

  • UPS module isolated safely

  • Load fed directly from bypass source

  • No shutdown of critical loads

This enables hot maintenance, which is vital in continuous process industries.


๐Ÿ›ก️ Why Choose Parallel Redundancy (N+N)?

๐Ÿ”น Eliminates single point of failure
๐Ÿ”น Increases system availability
๐Ÿ”น Enables online maintenance
๐Ÿ”น Supports Tier-III / Tier-IV infrastructure standards
๐Ÿ”น Allows seamless load expansion
๐Ÿ”น Enhances fault tolerance


๐Ÿ“Œ Critical Design Considerations

✔️ Synchronization between UPS modules
✔️ Proper sizing of static switch
✔️ Accurate battery autonomy calculations
✔️ Short-circuit & protection coordination
✔️ Neutral & earthing philosophy
✔️ Harmonic mitigation strategy
✔️ Transformer vector group compatibility
✔️ Load sharing logic configuration

A mismatch in any of these can compromise redundancy.


๐ŸŽฏ Typical Applications

๐Ÿข Data Centers
๐Ÿญ Oil & Gas Facilities
๐Ÿ’Š Pharmaceutical Plants
๐Ÿฅ Hospitals & Healthcare
๐Ÿ—️ Industrial Automation & Control Systems
๐Ÿฆ Banking & Financial Institutions


๐Ÿ’ก Final Insight

A Parallel Redundant UPS system is not merely a backup source —
it is a continuity engineering strategy.

Design it with precision.
Coordinate protection carefully.
Test redundancy thoroughly.
Monitor continuously.

Because in critical systems — failure is not an option.


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Understanding Transformer Earthing

⚡ Understanding Transformer Earthing

Why It’s Never “One-Size-Fits-All”

Proper earthing is the foundation of power system safety, stability, and protection.
But earthing is not a single connection to ground — it serves different purposes depending on whether you’re protecting:

  • ๐Ÿ‘ท People

  • ⚙️ Equipment

  • ๐Ÿ“ก Sensitive control & signal systems

A practical way to remember transformer earthing types is N–B–L–S:


๐Ÿ”น 1️⃣ Neutral Earthing (N)

Neutral earthing provides a controlled return path for earth fault current back to the source. It ensures:

✔️ Fast fault detection
✔️ System stability
✔️ Controlled overvoltages

Types of Neutral Earthing:

▫️ Solid Earthing
Direct connection of neutral to earth.
Used mainly in LV systems for quick fault clearance.

▫️ Resistance Earthing
A Neutral Grounding Resistor (NGR) limits fault current to reduce damage to equipment and arc flash energy.

▫️ Reactance Earthing
Uses reactance to limit short-circuit current and control transient behavior.

๐Ÿ“Œ Selection depends on system voltage level, fault level, and protection philosophy.


๐Ÿ”น 2️⃣ Body / Tank Earthing (B)

This is mandatory for human safety.

It connects all non-current-carrying metallic parts (transformer tank, radiator, marshalling box, structure) to earth.

๐Ÿ›ก️ If insulation fails, leakage current flows safely to ground — preventing electric shock hazards.

✔️ Typically requires double earthing for transformers
✔️ Must comply with IS 3043 (Earthing Code of Practice)


๐Ÿ”น 3️⃣ Lightning Arrestor Earthing (L)

Lightning arresters (LA) must have a separate and low-resistance earth path.

⚡ Purpose:
To safely discharge high-voltage lightning surges directly into the ground without passing through equipment.

✔️ Independent earth pit preferred
✔️ Short, straight, low-impedance path
✔️ Proper bonding with main earth grid


๐Ÿ”น 4️⃣ Shield Earthing (S)

Used where signal integrity and noise reduction are critical.

An electrostatic shield (when provided) between primary and secondary windings is earthed to:

✔️ Reduce EMI
✔️ Improve signal quality
✔️ Protect sensitive electronics

Common in:

  • Inverter duty isolation transformers

  • K-rated transformers

  • Control & instrumentation systems

๐ŸŸฅ Note: Standard power and distribution transformers typically do not include an electrostatic shield by default.


๐ŸŽฏ Why Proper Earthing Matters

Effective earthing ensures that when a fault occurs:

✔️ Fault current flows safely
✔️ Protection systems operate instantly
✔️ Equipment damage is minimized
✔️ Personnel safety is ensured
✔️ System reliability is maintained


๐Ÿ”‘ Final Thought

Earthing is not just a compliance requirement —
it is a carefully engineered protection strategy tailored to system voltage, fault level, and application.

Design it wisely. Install it correctly. Test it periodically.


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๐Ÿ”Œ Indian Standards (IS Codes) Every Electrical Engineer Should Keep Handy

๐Ÿ”Œ Indian Standards (IS Codes) Every Electrical Engineer Should Keep Handy ๐Ÿ‡ฎ๐Ÿ‡ณ

In electrical engineering, compliance is not optional — it’s the foundation of safety, reliability, and legal approval.
Indian Standards (IS Codes) issued by BIS provide structured guidance for design, installation, testing, operation, and maintenance of electrical systems.

Here’s a refined and categorized quick-reference list for practical use:


⚡ System Studies & Design

  • IS 13234 → Short-circuit calculation in 3-phase AC systems

  • IS 12360 → Voltage bands & preferred system voltages/frequencies

  • IS 3716 → Insulation coordination guide

  • IS 9676 → Reference ambient temperature for electrical equipment


๐Ÿ”ฅ Hazardous Area Classification

  • IS 5572 → Classification of hazardous areas (flammable gases/vapours)

  • IS 5571 → Selection of electrical equipment in hazardous areas

  • IS 13408 → Electrical apparatus for explosive atmospheres

  • IS 7689 → Control of static electricity


๐Ÿ” Transformers & Associated Equipment

  • IS 10028 → Transformer selection, installation & maintenance

  • IS 10561 → Application guide for power transformers

  • IS 1180 → Outdoor oil-immersed distribution transformers

  • IS 335 → Transformer oil specifications

  • IS 8478 → On-load tap changer (OLTC) guide

  • IS 4201 → Current transformer (CT) application guide

  • IS 4146 → Voltage transformer (PT/VT) application guide


๐Ÿงฐ Cables & Installation

  • IS 7098 → XLPE insulated power cables

  • IS 1554 → PVC insulated power cables

  • IS 3961 → Recommended current ratings for cables

  • IS 1255 → Installation & maintenance of power cables

  • IS 732 → Electrical wiring installations


๐Ÿ›ก Protection, Switchgear & Relays

  • IS 3842 → Electrical relays application guide

  • IS 10118 → Switchgear & controlgear installation/maintenance


๐ŸŒ Earthing & Lightning Protection

  • IS 3043 → Code of practice for earthing

  • IS 2309 → Lightning protection for buildings


๐Ÿ’ก Lighting Engineering

  • IS 6665 → Industrial lighting

  • IS 3646 → Interior illumination

  • IS 1944 → Public street lighting


๐Ÿ”ฅ Fire & Electrical Safety

  • IS 1646 → Fire safety of buildings (electrical aspects)

  • IS 3034 → Fire safety in industrial buildings

  • IS 5216 → Safety procedures in electrical work


⚙️ Electrical Machines

  • IS 325 → Three-phase induction motors


๐Ÿ“Œ Why These Standards Matter

✔️ Ensure statutory compliance
✔️ Improve system safety & reliability
✔️ Reduce failures and downtime
✔️ Support inspection & audit readiness
✔️ Build professional credibility

These IS codes form the technical backbone of electrical engineering practice in India — from concept design to commissioning and maintenance.


If you’re an electrical engineer, site engineer, consultant, or student, keep this reference accessible.

๐Ÿ’ฌ Feel free to add any important IS code I may have missed — let’s make this list more comprehensive for the community!


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☀️ Solar Plant HT Evacuation – Detailed Checklist & SOP

☀️ Solar Plant HT Evacuation – Detailed Checklist & SOP

High Tension (HT) evacuation is a critical backbone activity in any solar power plant. Proper design, installation, testing, and protection coordination directly impact plant efficiency, safety, grid compliance, and long-term reliability.


⚡ A. HT Evacuation – Design & Planning Checklist

1️⃣ System Design & Grid Approval

✔️ HT voltage level finalized (11 kV / 22 kV / 33 kV) as per DISCOM approval
✔️ Approved Single Line Diagram (SLD) available and stamped by DISCOM
✔️ Short-circuit level study completed and verified
✔️ Protection philosophy finalized (selectivity & coordination ensured)
✔️ Redundancy philosophy (Ring / Radial / Dual source) defined
✔️ Provision for future plant capacity expansion incorporated


2️⃣ Transformer Planning & Placement

✔️ Inverter Duty Transformer (IDT) located close to inverter blocks to minimize LT losses
✔️ Pooling / Main Transformer positioned near load center or switchyard
✔️ HT cable / overhead (OH) line route optimized for minimum length and losses
✔️ Sufficient clearance for maintenance & ventilation ensured
✔️ Proper RCC foundation with oil soak pit / bund wall (if oil-filled transformer)
✔️ Neutral earthing arrangement finalized (resistor/solid earthing as applicable)


3️⃣ HT Cable / Overhead Line Selection

✔️ Conductor size selected based on current carrying capacity, voltage drop & thermal limits
✔️ Insulation class matching system voltage (e.g., 12 kV / 24 kV / 36 kV class)
✔️ Technical loss calculations validated
✔️ Soil resistivity & temperature considered for cable derating
✔️ Proper laying method (direct buried / trench / cable tray / HDPE duct) defined
✔️ Cable route markers & identification plan prepared


4️⃣ HT Switchgear & Protection System

✔️ VCB / RMU rated as per system fault level
✔️ Protection relays configured (OC, EF, UV, OV, REF, Differential if applicable)
✔️ CT/PT ratios correctly selected and verified
✔️ Numerical relay settings approved and documented
✔️ Protection coordination study with DISCOM grid completed
✔️ Mechanical & electrical interlocking logic tested


5️⃣ Earthing & Lightning Protection

✔️ Substation earth resistance within permissible limits (typically <1 ohm)
✔️ Separate earth pits for equipment body, neutral, and lightning arresters
✔️ Transformer, structure, panel earthing continuity verified
✔️ LA installed at line entry & transformer HT/LT side
✔️ Earth grid interconnected and bonded properly


⚡ B. SOP – HT Evacuation Execution

๐Ÿ”น Step 1: Pre-Execution Preparation

✔️ Approved drawings (SLD, layout, earthing, protection) available at site
✔️ Material inspection & test certificates verified
✔️ Calibration certificates of torque wrench & testing equipment available
✔️ HT safety tools (insulated gloves, discharge rods, rubber mats) available
✔️ Valid work permit & shutdown approval obtained


๐Ÿ”น Step 2: Installation

✔️ Transformer installed on leveled foundation with correct alignment
✔️ Anchor bolts tightened and torque values recorded
✔️ HT cable bending radius maintained as per manufacturer guidelines
✔️ Correct phase sequence maintained throughout system
✔️ Terminations (heat shrink / cold shrink) executed by trained personnel
✔️ Proper gland earthing & double earthing ensured


๐Ÿ”น Step 3: Jointing & Terminations

✔️ Approved HT joint kits used
✔️ Conductor surfaces cleaned, oxide removed, and contact grease applied
✔️ Proper crimping tools with correct dies used
✔️ No exposed strands or insulation damage
✔️ Stress control components installed correctly


๐Ÿ”น Step 4: Testing & Commissioning

✔️ Insulation Resistance (IR) test conducted and recorded
✔️ Hi-Pot / VLF test for HT cables performed
✔️ Transformer ratio, polarity & vector group verified
✔️ Protection relay secondary injection testing completed
✔️ Earth resistance measurement recorded
✔️ Functional checks of breaker trip & close circuits done


๐Ÿ”น Step 5: Charging & Energization

✔️ Area barricaded and access restricted
✔️ All protection systems in service
✔️ First energization under no-load condition
✔️ Voltage, current & relay indications monitored
✔️ Checked for abnormal sound, vibration, or heating
✔️ Load gradually applied after stability confirmation


⚡ C. Mandatory Safety SOP

✔️ Only authorized and trained personnel permitted
✔️ PPE mandatory: helmet, arc-rated gloves, safety shoes, face shield
✔️ Lock-Out Tag-Out (LOTO) procedure strictly followed
✔️ Live working strictly prohibited
✔️ Danger boards & signage installed at all HT locations
✔️ Emergency response & first aid kit available


⚠️ D. Common Mistakes to Avoid

❌ Oversized HT route increasing losses & cost
❌ Poor termination workmanship leading to partial discharge
❌ Inadequate earthing or improper bonding
❌ Protection mismatch with DISCOM grid settings
❌ Ignoring future expansion provisions
❌ Improper torque or absence of torque marking


๐Ÿ”‘ Key Takeaway

HT evacuation is not just about transferring power to the grid — it directly impacts:

✔️ Plant efficiency
✔️ Electrical safety
✔️ Grid compliance
✔️ Operational reliability
✔️ Long-term asset life

A well-designed and properly executed HT system ensures smooth commissioning, minimal downtime, and sustained performance of the solar power plant.


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Friday, September 12, 2025

15 Easy Nano Banana Prompts for 3D Figurines

  1. Create a 1/7 scale commercialized figurine of the character in the photo, realistic style, on a computer desk, with a round transparent acrylic base and no text. Next to it, add a toy packaging box printed with original artwork.

  2. Make a cute plush toy version of the character, oversized head, simple clothes, fuzzy fabric, against a plain backdrop with soft lighting.

  3. Turn the photo into an anime figurine on a clear acrylic base, vibrant pose, with a manga-style background and neon lighting.

  4. Make a superhero action figure, dynamic stance, with a cape and comic book packaging beside the figurine.

  5. Transform the image into a 3D game character, standing on a platform in a pixelated environment with video game props.

  6. Render a photorealistic animal figurine, sitting on a shelf with tiny accessories like a food bowl or toys, in miniature sizing and bright colors.

  7. Create an astronaut collectible figure, in a spacesuit, on a moon base, with a round stand and a galaxy background.

  8. Turn any image into a pop star model, performing on a mini stage with microphone, concert lighting, and music-note details.

  9. Make a fantasy character toy, holding a sword or staff, in a magical forest setting with glow effects.

  10. Render a businessperson as a desk figurine, in a suit and tie, holding a laptop and with books stacked nearby.

  11. Stylize the photo as a hologram-model figure, with transparent lines, a sci-fi aesthetic, displayed on a tech table.

  12. Make a sports star collectible, in a jersey uniform, on a mini stadium, celebration pose, with a trophy accessory.

  13. Transform into a cartoon-style figurine, playful colors, oversized shoes, and comic props.

  14. Render a pet as a designer collectible, wearing a bandana or collar, on a pet bed background, in a playful stance.

  15. Make a historic figure model, with period costume, old map background, and a stand labeled “Limited Edition”.

https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg https://www.youtube.com/channel/UC4_D50vMu1wbQrPaLFYo6Eg RRB JE, SSC AE/JE UPSSSC JE, SSC JE, CIVIL ENGINEERING MCQs, ELECTICAL ENGINEERING MCQs, preavious year quesion papers, dmrc, lmrc, drdo,rrb ntpc, ntpc, pgcil, dsssb, states board, GATE IES EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA https://t.me/pravendrarajpoot Daily news & current affairs in hindi & english fully updated Daily current affairs https://t.me/newsdailypkr Engineering Discussion group for your upcoming exams, you can ask your any query regarding your problem,๐Ÿ‘‡๐Ÿ‘‡๐Ÿ‘‡ https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA PKR ELECTRICAL ENGINEERING I am sure this is the best place for you guys subscribe and get success IF YOU WANT TO JOIN ME ON TELEGRAM FOR PDF @newsdailypkr AE/JE EE, ESE, ECE, ME, CE, IT & CS EXAM MATERIALS & OLD PAPERS Electrical Engineering https://t.me/pravendrarajpoot facebook page:- Pravendra Kumar Rajpoot https://t.me/newsdailypkr https://chat.whatsapp.com/5AS7dNFTP4H4vVsiWsqHrT https://t.me/srk50 https://t.me/pravendrarajpoot https://t.me/joinchat/JObxeA7n6S4qvnegrGhTgA

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