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Simulations Project
1/25/2024 Brij Consulting, LLC Jean Marshall 1
How Things
get BUILT in
the World
of Glass
Systems
V3 Overcome Agile Constraint
V2 Task Analytics
V1 Stakeholder Approach
= B
Dividing Content with VRD
Portals
Ring Composition splits the Requirement
Lift X2 =Tan
#1
Portals Requirements Demand
#1
Short Term (EV)
vs. Long Term (PV)
Demand =
Uses of VRD: (see next)
1. Split Requirement for Price
2. Split Instances of Object Simulation
3. Split Motion of Car/Road Syncopation
4. Split Demand in Multiple Markets
5. Split Product in Ordinal Packaging
µIf you use the scope as the differential, you retain
motion in the remainder as in T&MM that needs to be
ended with a secant engineered response i.e., failsafe
1/25/2024 Brij Consulting, LLC Jean Marshall 2
Car/road sync
LIFT Manifold
V1 Stakeholder Approach
Applying VRD across the Board
Portals Roles
Performance
Assimilation
Scope/Requirements Split Demand
• The primary influence of price is the car & road
syncopation of the 5 ‘car-associated’ portal requirements
Prototype
Manifold
Design
Approval
1/25/2024 Brij Consulting, LLC Jean Marshall 3
LIFT and DRIFT
STABILIZATION
Note that our VRD template was renumbered here
to fit a later model (subsequent knowledge)
V1 Stakeholder Approach
Other notable VRD facts
• Componentization has events
that enable distribution to
the market.
• Packaging becomes the
unitive facts between all
portal correspondence
1/25/2024 Brij Consulting, LLC Jean Marshall 4
Critical
Path
This data is moving data and
because it is not stationary
during the project its focus
can change; Project must be
parked for this snapshot.
VRD
STATS
1604
APP III
V1 Stakeholder Approach
~ B
Portals
Reconciliation
Brij
Consulting,
LLC
Jean
Marshall
1/25/2024 5
SCORECARD RELATIONAL
Future Cash Difference
SCORECARD RELATIONAL
Pass Thru Gain (EOP)
Financial Conversion
The Architectural Services Market Grows on Labor and
Scientifically applied building and tool techniques, virtual
machines and glass applications with Ark dimensional basis.
Because the
Portals secure
the investment
and Portal
Methods
mitigate the
risk.
= B
V1 Stakeholder Approach
See Growth Slide 14
See Scorecard Slide 22
See Scorecard Slide 22
See Scorecard Slide 22
21969.52 ÷ 21.22
= 35.32+1000
1035.32
^
Leading Questions
1/25/2024
Brij
Consulting,
LLC
Jean
Marshall
6
What other lower- level
tasks are there beside
prototype manifold and car
and road syncopation?
Tasks
Define Lower-Level Tasks
Using Best Case Find Portal Value
Compile Load and Production
Write Forward and Performance St’s.
Simulations
What Simulation Requirements
With Partners are required?
Instances, Moments, Markers
Recommended Dates
Pivots & Lifts
Can we suggest a portal valuation
equation? Or at least a method?
PRODUCTION
PORTAL LAYOUT
SUPPLY CHAIN
PORTAL
SIMULATIONS
PORTAL
Need to check on Strabo and Lens
What about Manifold and other
Technologies like Thread?
DEPTH AND ATTRIBUTION
OF PROJECT CONTENT
1
2
3
1
2 3
How do we cope with the Variable
Rate Demand of this project?
1
3
2
Portal Valuation
Accomplished
V1 Stakeholder Approach
3
= B
hyD Best Case Tasking
Brij
Consulting,
LLC
Jean
Marshall
1/25/2024 7
Specify Role definition of lower-level tasking
Prototype
Manifold
Car/Road
Syncopation
Project
Dependencies
2 Table Ready
Next Prototype
Manifold Lens
Arrangement
Local Access
Window
Broad Dates
Overall and High-Level Tasking Best Case Tasking Data
Design
Approval
9753
48.5
30,974.68
2-Portal Valuation =
17741.6
Long Term Demand
3 Table Ready
1 Table Ready
z
V1 Stakeholder Approach
Variable Demand
Project Complexity
If ever there was a case of variable rate demand it certainly is the
glass project itself and its impact on the hyD division engaging in
the manufacturing of the first road-worthy glass car.
Up until the date 2037 the scale of the project is concerned with
componentization and the scale of the achievement is a price of
$400/unit with a cost of $300 for prototyping.
It is obvious that once Site Development (SD) and Scientific Assets
(SA) begin to be composed the scale changes to distribution of
the synthesized or solid state engineered product.
Primarily there is more than one portal attributed to this project
and also more than one market at work. So it is in this manner
that Variable Rate Demand Composition Application must be
applied.
Notice also the Theta branch is moving from Theta + 1 to Theta +2
to Theta + 3 in our notation.
Θ+
Θ+
Another aspect of the problem is to go from a
binary method such as industrial coatings to the
full ark method such as prototyping. This is part
of the learning curve to package and distribute a
green & glass product.
Project Scope
α rate
30,974,689,621-30,874,553,369.210 = 100,136,351.79= BIFURCATION
Hybrid methods
produce Bifurcations-
Adding dimensions
40.98
Forward Statistical Net
LENS MODIFICATIONS
View
35.58
1
1
3
40.98
30.00
35.58
1/25/2024
Brij
Consulting,
LLC
Jean
Marshall
8
V1 Stakeholder Approach
Full Scope
• The full scope of the project is completed with
partnering is considered a 50-year project and is
accomplished with a payback of 196. Partnering
will add an additional simulations scrum set.
• Since the project is highly integrated with
advanced engineering, details are accomplished
with refined dates and scope by the engineers.
• Secant Engineering and Glass Construction are
the means to more complex and highly scientific
virtual products and machines.
1/25/2024
Brij
Consulting,
LLC
Jean
Marshall
9
BAC + Asset Conversion .0003082= .00275082
BAC
Long Term Demand
75833 = 275.377922
Leveraging STRABO @ Gate
𝟓𝟓𝟓𝟓𝟓𝟓. 𝟕𝟕𝟕𝟕𝟕𝟕𝟕𝟕 × 𝟐𝟐 = 𝟏𝟏𝟏𝟏𝟏𝟏. 𝟓𝟓
Best Case Tasking Data
115
196
APP III
APP III
X2 = 544 Value-Add
+10^3
PROOF of 2-PORTALS
SCORECARD
V1 Stakeholder Approach
There is an upgrade on the
Scorecard not part of the Task
List, perhaps a last-minute
requirement
.5582734 x 2 =
1.164 which is
a labor metric
If a low-level task it should be added in a
non-attributed period to avoid date shift
Added task
increases
burden
558.2734-
550.7558 =
7.51
The payback
on the
Scorecard is
lower due to
unbillable
Asset upgrade
WATCH!
Brij
Consulting,
LLC
Jean
Marshall
1/25/2024 10
Simulations make the drill down
technique in Power BI helpful in
seeing relevant parties to tasking
arrangements and their progress
markers.
The Glass Project creates many
multi-agencies related to supply
chain efforts
It is not difficult to imagine 1000
such Simulations across the
world with many different glass
associative industries at work.
This is what makes the
replacement economy so viable.
Power BI
Empowering media
18L
6L
Insight: T3M4 Supply Chain = 1/cosine = Secant of 9.33/3 = 3.11 Perimeter all phases
Supply chain
is the Area Graph
that describes
the Process
Short Term Demand
121
V1 Stakeholder Approach
Short Term Demand
Reconciling in this difficult
corner of the manufacturing
requirement, we now turn to
see if we have adequate lens
deliberation for the Strabo
requirement coming up.
When do the Lens
arrive variegated for
this requirement?
1/25/2024
Brij Consulting, LLC Jean Marshall
11
This glass concept
overcame all scale, mass
and hybrid conditions.
135.4
EV = 13.5
Adj
Both m and M dates of the
first two requirements are
within the scope of this
All 4 Lens dates should be set
up in STRABO for Simulations,
but the first lens can precede
the start of the project; Also,
thread and manifold delivery.
Thread and Manifold requirement
ROLES
Receivable = 8.774 B
Assets = 39.749 B
𝒔𝒔𝒔𝒔𝒔𝒔 𝟏𝟏𝟏𝟏𝟏𝟏 × 𝟐𝟐 = 𝟏𝟏. 𝟒𝟒𝟒𝟒𝟒𝟒𝟒𝟒 = 𝟐𝟐
135.4
^Product Basis
^As shown in Simulations Watch
Master
Builder
Roles
V2 Task Analytics
1/25/2024 Brij Consulting, LLC Jean Marshall 12
Price associated with
Prototyping (Standard)
The Prototyping Task is the
beginning of the Teams process
V2 Task Analytics
Prototyping is
one of the most
significant and
labor-intensive
new tasks
Brij
Consulting,
LLC
Jean
Marshall
1/25/2024 13
Branch Partner and Larger Domain
Production Supply Chain
IF=772
Branch Yi-Assets + Gate
SC=121
V2 Task Analytics
Study of Ark Sciences in Building and Design
1/25/2024 Brij Consulting, LLC Jean Marshall 14
The Supply Chain keeps moving toward the
Architectural Services Market
Complex Portals deliver multiple instance
management to the solution of VRD
V2 Task Analytics
The Market will double largely
due to later projects Portable Assets
Configuring the Job Match in Portal Relationship
Brij Consulting, LLC Jean Marshall 15
We are comparing a generic book stacking
problem with job matching across portals.
Our remainder in the stack is 135 or like EV.
𝒔𝒔𝒔𝒔𝒔𝒔 𝟏𝟏𝟏𝟏𝟏𝟏 × 𝟐𝟐 = 𝟏𝟏. 𝟒𝟒𝟒𝟒𝟒𝟒𝟒𝟒 = 𝟐𝟐
1
2
3
1
2 3
Market Position
= B
Task, Date & Time Stamp
REQUIREMENT:
The Risk for not achieving domain
order is in the Supply Chain, the Split
Risk is in the Production
1/25/2024
121
Alternative
Method
A
P
P
L
Y
FORMS
121
= B
= B
164
2
V3 Overcome Agile Constraint
VALUATION PROBLEM (SCORECARD)
1/25/2024 Brij Consulting, LLC Jean Marshall 16
Portals reduce risk and
modify outcomes
Mitigated
V3 Overcome Agile Constraint
The blend-over creates
scalable economies
Mitigated
Summary:
the Last of the Series
When the Process begins to take on its continuous
nature it can move into cloud confluency. No one
can describe how that occurs now but suffice it to say
that the building process has become a fluent score.
Instances and Moments of what used to be
considered dramatic change become part of the flow
of a masterful arrangement.
Creation is driven by circumspection of pillars and
their cloud driven capabilities that become Ark
delivered in a STREAM composition. [50+ Years]
1/25/2024 Brij Consulting, LLC Jean Marshall 17
Master Builder
Milestone Dates of
Origination
These are Supply Chain shifts for the
Milestone Dates that built the
product cartography. The product
dates are likely to shift with re-
specification, so we are initiating the
project with tentative finish dates
for the lens and lead times.
Brij Consulting, LLC Jean Marshall
1/25/2024 18
mM Lens Positions
Milestone Related
m
m M
M
M
10 yrs. ending 8/22/2035
8 yrs. ending 11/26/2051
8 yrs. ending 2/1/2062
4 yrs. ending 6/3/2027 m
M
M
M
- 4 Agile years
Lens Commitment Dates
Appendix I
Table <or> SA Associations
1/25/2024 Brij Consulting, LLC Jean Marshall 19
Appendix II
Thread
makers use
powerful Lens
but not
variegated
19
Full Scope
The full scope of the project is completed with partnering is
considered a 50-year project and is accomplished with a
payback of 196. Partnering will add an additional
simulations scrum set.
• Since the project is highly integrated
with advanced engineering details are
accomplished with refined dates and
scope by the engineers.
• Secant Engineering and Glass
Construction are the means to more
complex and highly scientific virtual
products and machines.
1/25/2024 Brij Consulting, LLC Jean Marshall 20
BAC
Long Term Demand
PV = 13.8
75833 = 275.377922
Leveraging STRABO @ Gate
550.7558 × 2 = 111.5
Best Case Tasking Data
115
1604
196
196
Appendix III
Slide 4
Slide 8
How do Ark Metrics from the Bible Stack up?
75.833 × 2 = 151.67 − 150.21 = 1.46 − 1.445 = .015
Note
196,
115,
57,
1604
TIMELINE OF PRODUCT
1/25/2024 Brij Consulting, LLC Jean Marshall 21
∆ α ω
Glass Cars
Architectural Builds
Remote Development
Solid State Engineering
Complex Builds
Wireless Energy
Product Media
3D Ark Media
V-A
From Cartography Appendix IV
Value added is
comparable to
asset turns
increasing equity
performance
• Captive Engineering of the Glass Plan allows for a market free of price
uncertainty and a modeled frequency expectation. Without regulation of
choice, the adaptation of glass to model various compositional upgrades
allows the producer to enjoy a market that exploits positive change.
1/25/2024 Brij Consulting, LLC Jean Marshall 22
Appendix V
From earlier work
Domain = 31.1
Captive Engineering
Proof of Domain
Ark Certifications include
LIFT, LIFE and T&MM
Must be Prototype and
Production Book Certified
Brij Consulting, LLC Jean Marshall
1/25/2024 24
1. The Scope of Glass Projects: Benchmarking and IF Factor for the scope
determination of Glass and STRABO serialization for Agile
2. Glass Impact: Streaming the Engineering of Components, Solid State
Assemblage, Table Design Outcomes
3. Cascading in Green: The theories and concepts related to the Green Wall and
the starting compositing of green energy and wall migrations.
4. SSE: The Remote End: How Solid-State Engineering is Performance mined and
delivered remotely
5. Cloud-Star Evolution: Where Cloud and Star Evolve to Fluency
6. Simulations in Diminishing Scale: The use of Ring and Lens
7. Simulations: Synergy Modifications: Mitigation in Risk Analysis
8. Simulations: Marking the Contingent Outcome: Marking Pivots and Lifts
9. Simulations: Making a Watch Case Window: Fielding the Position
10. Simulations: Branching with Partners: Partner Branching for Remote Position
SSE
CASCADE
IMPACT
SCOPE
CLOUD-STAR
Brij Consulting, LLC | SlideShare
Part I: City Scale
Part II: Remote Scale
Part III: Confluent Scale
SIMULATIONS
P a p e rs i n D e s ign Se ri e s
Part I, II, III
Part I, II
Brij Consulting, LLC Jean Marshall
1/25/2024 25
P a p e rs i n T e s t Se ri es
1. The Car and Road Test: Simulating Glass Cars and Candle stone Roads
Brij Consulting, LLC | SlideShare
V3 Glass Package
V2 Synergy Modifications
V1 Digital Testing
Strabo
Tying projects back to the Strabo Omega
allows for Simulations Cloud to orchestrate
outcomes
Part I,
From Slide 13
2. Home and Foundation Test: Simulating Glass Instances of Candle stone
and Thread in Componentizations utilizing a legacy form of Glass
3. Glass Big Push: Legacy Glass gives way to Solid State Engineering,
Instancing and Building with remote synchronization Parts I, and II/III
Of Pillars and Pipes, Portals and Plaits
Part I:
Part II Simulations Marking
1. Portal Prosperity: An overview of Glass Theory and Ark
Design develops property reconcilement for Conveyance
2. Crossover Conveyance: Beginning with Remote Signature,
threading the advancing fingerprint with a glass path and
integral site management, moving into SIMULATIONS in
Real Time
3. Converge- The Remote Build: Tasks to consider the
process of converging to the Remote Build Site and what
considerations are given to producing a remote service or
build out of a productive requirement, introducing sandbox
theory. Phase I only considers the Kitchen Tech. Phase II
is involved in whole home Media and Tech in Glass.
Phase III develops the land and its attributes. This is three
separate papers.
1/25/2024
Brij Consulting, LLC Jean Marshall
26
1. Studying T&MM: the requirement for certification of mobility
for competent conveyances
2. Portal Projects: the evidence, timing and intelligent use of
portals
3. Calling it Green: Components of Green Energy, short
review: Calling it Green requires new uses of potential and
^studies in wave glass and graphical relationships can raise up
a green energy fluency that will lead to energy self-sufficiency
4. Dimensions in Multivariant Fabrications: Determining Forms
and Contents of Green Energy and Blue Wave Cascade;
relating elements to current science and future requirements
5. Wave and Lens Assimilation: The means to compile and to
build in Glass Systems is described. The use of secant math.
6. Math Solutions for Wave and Lens Assimilations: See also
Commentary for Math Solutions
7. Supply Side Portfolio: Timing and Model of Glass and Green
events to fulfill path… Does the Tan Line help?
8. Partners in T Pluribus Unum: Measuring with Diacritical
Marks
1. Portfolio Wheels: Study of Secants and Wheels in the Dynamic
requirement for Media to write and produce in Ark Science and
Dimensional Systems, Introduction of the Story “Eru finds a Golden
Pen.”
2. Ark Media: The Dialogue of the Story and the Construction of
Storyboards, Mix and Remix specifications, beginning crosswalk and
encryptions
3. Builds and Simulations: Discuss Matrix Trees, Migratory Patterns and
the use of Secants to Build tooling
4. The Corner of Mu Sic: an update of our Digital Paper on Mu Sic to
include Ark encryptions and design considerations
5. The Glass House: Magi and Marcus Engineering plans to invest in a
Plait Glass facility for building and research in remote Ark Science.
Start of Tooling and Secant Design for the Construction Industry
6. The Remote Build: Planning a Theoretical Production for untried
Architecture
7. Glass Mix Z-Form: Production Walk-Thru Glass Mix and Forms, leads
into the Write Process
8. Bridging the Instance: Now operating multiple instances must bridge
the operations, learn about deciduous models and deliberate the
outcome of operations for the 2022 Plan of Magi and Marcus
9. Architectural Builds and Designs: Looking into Delivery Mechanics and
the Products themselves
10. Pipes and Plaits in Ark Mode Design: How the Plait Pipe System
assists with Land Products. See Number Theory
11. Continuous Modeling: Moving away from the Contiguous Model to a
strategy of seamless integration of methods and modes of operation.
See Number Theory.
12. The Glass Warehouse: From Start to Finish the streamlined operations
of the Marcus and Magi Engineering remote architectural process
13. Branch- Sound and Image Construction: Characterizing the branch
capability of new applications, appliances and mode[ls] of operations
1. Ark in Glass: Changing the Schema for Ark Mode crossover, beginning
study of Secants and Wheels for the “cube-ified glass” engineering of
Imaging, sound and motion characteristics.
2. The New Stone: Simulations and Re-instancing to package, confect and
view glass media
3. Dimensional Building: Dimensional Arrays, Z strength, Product Media,
Interdimensional Matrices.
4. The Dynamic Instance: Product Media Discussed
5. The Glass Build: Base Build and Modules Assembled, considering impact of
dimensional systems
6. Glass in the Making: Costing and Loading, Assembly and Assimilation, IP
Defined, Logos
7. Art of the Science: What can be made? Assimilation discussed, look at
basic product ideas
8. Digital Glass Production: Pipe Transit and RIK Declare, Batch Appliance
(Dialogue paper)
9. Imposition of Value Engineering: Establishing and Justifying the Load for
Pipe Transit
10. The Digital Plait Position: Engineering Design of the Load and Thruput
11. ^Mu Sic in the Advancing Age: Use of Fingerprint and Encryption for
Operational Loads
12. Engineering Objects: The Purpose of this Paper is to Consider the means to
raise up a Digital Portal Production System using appliances gained through
Plait Object and Gate driven configurations that work with Digital Mechanics.
Six-Layer Glass and Appliances
13. Instancing at the Gate: Use of Gates and Instances, bridging of the
engineering process
14. Interpolative Scope: Use of a Demand and Production Scope for building
and delivery of product, learning to specify material, looking for union of
Vector
15. Functional Glass: Fitness for Function and Moral Intelligence, Bayesian
Analysis
16. The Glass Wall: This is a very difficult staging of advanced engineering to
depict …Motivated by sound it creates a means by sound to cascade light for
safe and wireless power
17. The Glass Wave: Learning to Plait Gates, Reconcile Metrics to Scorecard,
and load value of Scrum
18. Scrum Costing w/notes (Book It Daniel): establishing scrum standards
(Dialogue paper)
19. Gate Plait Green (Mark It Mark): first scalable plait arrangement overcomes
bottleneck (Dialogue paper)
20. Scorecard Integration (Map It Ralph): A review of mappings to date, marking
old vs. new (Dialogue paper)
Motion Projects-8
Remote Theory-5
Ark Model-13 Digital-20
Go to https://www.slideshare.net/Marshallja/presentations
https://www.slideshare.net/Marshallja/commentary-for-math-solutions-for-
wave-and-lens-assimilationpdf
Roadmap: #47 & #48 & #49
Dimensional Building in Ark Design
Glass Cars and New Product Roadmap
Calendar Cartography
Building with Glass #50
New
Remote Theory
Ark Model
Motion Projects
Building
Simulations Project 1
2 3
1/25/2024 Brij Consulting, LLC Jean Marshall 27
Branching with Partners
BUILDING in
the World
of Glass
Systems
3110/MTh
1- Supply Chain
2. Productions
3. Simulations
= B
Simulations Project
Glass Systems| Brij Consulting, LLC |
Jean A. Marshall
Branching with Portals
1/25/2024 Brij Consulting, LLC Jean Marshall 28
Stored
Notes

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Simulations Partners.pdf

  • 1. Simulations Project 1/25/2024 Brij Consulting, LLC Jean Marshall 1 How Things get BUILT in the World of Glass Systems V3 Overcome Agile Constraint V2 Task Analytics V1 Stakeholder Approach = B
  • 2. Dividing Content with VRD Portals Ring Composition splits the Requirement Lift X2 =Tan #1 Portals Requirements Demand #1 Short Term (EV) vs. Long Term (PV) Demand = Uses of VRD: (see next) 1. Split Requirement for Price 2. Split Instances of Object Simulation 3. Split Motion of Car/Road Syncopation 4. Split Demand in Multiple Markets 5. Split Product in Ordinal Packaging µIf you use the scope as the differential, you retain motion in the remainder as in T&MM that needs to be ended with a secant engineered response i.e., failsafe 1/25/2024 Brij Consulting, LLC Jean Marshall 2 Car/road sync LIFT Manifold V1 Stakeholder Approach
  • 3. Applying VRD across the Board Portals Roles Performance Assimilation Scope/Requirements Split Demand • The primary influence of price is the car & road syncopation of the 5 ‘car-associated’ portal requirements Prototype Manifold Design Approval 1/25/2024 Brij Consulting, LLC Jean Marshall 3 LIFT and DRIFT STABILIZATION Note that our VRD template was renumbered here to fit a later model (subsequent knowledge) V1 Stakeholder Approach
  • 4. Other notable VRD facts • Componentization has events that enable distribution to the market. • Packaging becomes the unitive facts between all portal correspondence 1/25/2024 Brij Consulting, LLC Jean Marshall 4 Critical Path This data is moving data and because it is not stationary during the project its focus can change; Project must be parked for this snapshot. VRD STATS 1604 APP III V1 Stakeholder Approach ~ B
  • 5. Portals Reconciliation Brij Consulting, LLC Jean Marshall 1/25/2024 5 SCORECARD RELATIONAL Future Cash Difference SCORECARD RELATIONAL Pass Thru Gain (EOP) Financial Conversion The Architectural Services Market Grows on Labor and Scientifically applied building and tool techniques, virtual machines and glass applications with Ark dimensional basis. Because the Portals secure the investment and Portal Methods mitigate the risk. = B V1 Stakeholder Approach See Growth Slide 14 See Scorecard Slide 22 See Scorecard Slide 22 See Scorecard Slide 22 21969.52 ÷ 21.22 = 35.32+1000 1035.32 ^
  • 6. Leading Questions 1/25/2024 Brij Consulting, LLC Jean Marshall 6 What other lower- level tasks are there beside prototype manifold and car and road syncopation? Tasks Define Lower-Level Tasks Using Best Case Find Portal Value Compile Load and Production Write Forward and Performance St’s. Simulations What Simulation Requirements With Partners are required? Instances, Moments, Markers Recommended Dates Pivots & Lifts Can we suggest a portal valuation equation? Or at least a method? PRODUCTION PORTAL LAYOUT SUPPLY CHAIN PORTAL SIMULATIONS PORTAL Need to check on Strabo and Lens What about Manifold and other Technologies like Thread? DEPTH AND ATTRIBUTION OF PROJECT CONTENT 1 2 3 1 2 3 How do we cope with the Variable Rate Demand of this project? 1 3 2 Portal Valuation Accomplished V1 Stakeholder Approach 3 = B
  • 7. hyD Best Case Tasking Brij Consulting, LLC Jean Marshall 1/25/2024 7 Specify Role definition of lower-level tasking Prototype Manifold Car/Road Syncopation Project Dependencies 2 Table Ready Next Prototype Manifold Lens Arrangement Local Access Window Broad Dates Overall and High-Level Tasking Best Case Tasking Data Design Approval 9753 48.5 30,974.68 2-Portal Valuation = 17741.6 Long Term Demand 3 Table Ready 1 Table Ready z V1 Stakeholder Approach
  • 8. Variable Demand Project Complexity If ever there was a case of variable rate demand it certainly is the glass project itself and its impact on the hyD division engaging in the manufacturing of the first road-worthy glass car. Up until the date 2037 the scale of the project is concerned with componentization and the scale of the achievement is a price of $400/unit with a cost of $300 for prototyping. It is obvious that once Site Development (SD) and Scientific Assets (SA) begin to be composed the scale changes to distribution of the synthesized or solid state engineered product. Primarily there is more than one portal attributed to this project and also more than one market at work. So it is in this manner that Variable Rate Demand Composition Application must be applied. Notice also the Theta branch is moving from Theta + 1 to Theta +2 to Theta + 3 in our notation. Θ+ Θ+ Another aspect of the problem is to go from a binary method such as industrial coatings to the full ark method such as prototyping. This is part of the learning curve to package and distribute a green & glass product. Project Scope α rate 30,974,689,621-30,874,553,369.210 = 100,136,351.79= BIFURCATION Hybrid methods produce Bifurcations- Adding dimensions 40.98 Forward Statistical Net LENS MODIFICATIONS View 35.58 1 1 3 40.98 30.00 35.58 1/25/2024 Brij Consulting, LLC Jean Marshall 8 V1 Stakeholder Approach
  • 9. Full Scope • The full scope of the project is completed with partnering is considered a 50-year project and is accomplished with a payback of 196. Partnering will add an additional simulations scrum set. • Since the project is highly integrated with advanced engineering, details are accomplished with refined dates and scope by the engineers. • Secant Engineering and Glass Construction are the means to more complex and highly scientific virtual products and machines. 1/25/2024 Brij Consulting, LLC Jean Marshall 9 BAC + Asset Conversion .0003082= .00275082 BAC Long Term Demand 75833 = 275.377922 Leveraging STRABO @ Gate 𝟓𝟓𝟓𝟓𝟓𝟓. 𝟕𝟕𝟕𝟕𝟕𝟕𝟕𝟕 × 𝟐𝟐 = 𝟏𝟏𝟏𝟏𝟏𝟏. 𝟓𝟓 Best Case Tasking Data 115 196 APP III APP III X2 = 544 Value-Add +10^3 PROOF of 2-PORTALS SCORECARD V1 Stakeholder Approach There is an upgrade on the Scorecard not part of the Task List, perhaps a last-minute requirement .5582734 x 2 = 1.164 which is a labor metric If a low-level task it should be added in a non-attributed period to avoid date shift Added task increases burden 558.2734- 550.7558 = 7.51 The payback on the Scorecard is lower due to unbillable Asset upgrade WATCH!
  • 10. Brij Consulting, LLC Jean Marshall 1/25/2024 10 Simulations make the drill down technique in Power BI helpful in seeing relevant parties to tasking arrangements and their progress markers. The Glass Project creates many multi-agencies related to supply chain efforts It is not difficult to imagine 1000 such Simulations across the world with many different glass associative industries at work. This is what makes the replacement economy so viable. Power BI Empowering media 18L 6L Insight: T3M4 Supply Chain = 1/cosine = Secant of 9.33/3 = 3.11 Perimeter all phases Supply chain is the Area Graph that describes the Process Short Term Demand 121 V1 Stakeholder Approach
  • 11. Short Term Demand Reconciling in this difficult corner of the manufacturing requirement, we now turn to see if we have adequate lens deliberation for the Strabo requirement coming up. When do the Lens arrive variegated for this requirement? 1/25/2024 Brij Consulting, LLC Jean Marshall 11 This glass concept overcame all scale, mass and hybrid conditions. 135.4 EV = 13.5 Adj Both m and M dates of the first two requirements are within the scope of this All 4 Lens dates should be set up in STRABO for Simulations, but the first lens can precede the start of the project; Also, thread and manifold delivery. Thread and Manifold requirement ROLES Receivable = 8.774 B Assets = 39.749 B 𝒔𝒔𝒔𝒔𝒔𝒔 𝟏𝟏𝟏𝟏𝟏𝟏 × 𝟐𝟐 = 𝟏𝟏. 𝟒𝟒𝟒𝟒𝟒𝟒𝟒𝟒 = 𝟐𝟐 135.4 ^Product Basis ^As shown in Simulations Watch Master Builder Roles V2 Task Analytics
  • 12. 1/25/2024 Brij Consulting, LLC Jean Marshall 12 Price associated with Prototyping (Standard) The Prototyping Task is the beginning of the Teams process V2 Task Analytics Prototyping is one of the most significant and labor-intensive new tasks
  • 13. Brij Consulting, LLC Jean Marshall 1/25/2024 13 Branch Partner and Larger Domain Production Supply Chain IF=772 Branch Yi-Assets + Gate SC=121 V2 Task Analytics
  • 14. Study of Ark Sciences in Building and Design 1/25/2024 Brij Consulting, LLC Jean Marshall 14 The Supply Chain keeps moving toward the Architectural Services Market Complex Portals deliver multiple instance management to the solution of VRD V2 Task Analytics The Market will double largely due to later projects Portable Assets
  • 15. Configuring the Job Match in Portal Relationship Brij Consulting, LLC Jean Marshall 15 We are comparing a generic book stacking problem with job matching across portals. Our remainder in the stack is 135 or like EV. 𝒔𝒔𝒔𝒔𝒔𝒔 𝟏𝟏𝟏𝟏𝟏𝟏 × 𝟐𝟐 = 𝟏𝟏. 𝟒𝟒𝟒𝟒𝟒𝟒𝟒𝟒 = 𝟐𝟐 1 2 3 1 2 3 Market Position = B Task, Date & Time Stamp REQUIREMENT: The Risk for not achieving domain order is in the Supply Chain, the Split Risk is in the Production 1/25/2024 121 Alternative Method A P P L Y FORMS 121 = B = B 164 2 V3 Overcome Agile Constraint
  • 16. VALUATION PROBLEM (SCORECARD) 1/25/2024 Brij Consulting, LLC Jean Marshall 16 Portals reduce risk and modify outcomes Mitigated V3 Overcome Agile Constraint The blend-over creates scalable economies Mitigated
  • 17. Summary: the Last of the Series When the Process begins to take on its continuous nature it can move into cloud confluency. No one can describe how that occurs now but suffice it to say that the building process has become a fluent score. Instances and Moments of what used to be considered dramatic change become part of the flow of a masterful arrangement. Creation is driven by circumspection of pillars and their cloud driven capabilities that become Ark delivered in a STREAM composition. [50+ Years] 1/25/2024 Brij Consulting, LLC Jean Marshall 17 Master Builder
  • 18. Milestone Dates of Origination These are Supply Chain shifts for the Milestone Dates that built the product cartography. The product dates are likely to shift with re- specification, so we are initiating the project with tentative finish dates for the lens and lead times. Brij Consulting, LLC Jean Marshall 1/25/2024 18 mM Lens Positions Milestone Related m m M M M 10 yrs. ending 8/22/2035 8 yrs. ending 11/26/2051 8 yrs. ending 2/1/2062 4 yrs. ending 6/3/2027 m M M M - 4 Agile years Lens Commitment Dates Appendix I Table <or> SA Associations
  • 19. 1/25/2024 Brij Consulting, LLC Jean Marshall 19 Appendix II Thread makers use powerful Lens but not variegated 19
  • 20. Full Scope The full scope of the project is completed with partnering is considered a 50-year project and is accomplished with a payback of 196. Partnering will add an additional simulations scrum set. • Since the project is highly integrated with advanced engineering details are accomplished with refined dates and scope by the engineers. • Secant Engineering and Glass Construction are the means to more complex and highly scientific virtual products and machines. 1/25/2024 Brij Consulting, LLC Jean Marshall 20 BAC Long Term Demand PV = 13.8 75833 = 275.377922 Leveraging STRABO @ Gate 550.7558 × 2 = 111.5 Best Case Tasking Data 115 1604 196 196 Appendix III Slide 4 Slide 8 How do Ark Metrics from the Bible Stack up? 75.833 × 2 = 151.67 − 150.21 = 1.46 − 1.445 = .015 Note 196, 115, 57, 1604
  • 21. TIMELINE OF PRODUCT 1/25/2024 Brij Consulting, LLC Jean Marshall 21 ∆ α ω Glass Cars Architectural Builds Remote Development Solid State Engineering Complex Builds Wireless Energy Product Media 3D Ark Media V-A From Cartography Appendix IV Value added is comparable to asset turns increasing equity performance
  • 22. • Captive Engineering of the Glass Plan allows for a market free of price uncertainty and a modeled frequency expectation. Without regulation of choice, the adaptation of glass to model various compositional upgrades allows the producer to enjoy a market that exploits positive change. 1/25/2024 Brij Consulting, LLC Jean Marshall 22 Appendix V From earlier work Domain = 31.1 Captive Engineering Proof of Domain
  • 23. Ark Certifications include LIFT, LIFE and T&MM Must be Prototype and Production Book Certified
  • 24. Brij Consulting, LLC Jean Marshall 1/25/2024 24 1. The Scope of Glass Projects: Benchmarking and IF Factor for the scope determination of Glass and STRABO serialization for Agile 2. Glass Impact: Streaming the Engineering of Components, Solid State Assemblage, Table Design Outcomes 3. Cascading in Green: The theories and concepts related to the Green Wall and the starting compositing of green energy and wall migrations. 4. SSE: The Remote End: How Solid-State Engineering is Performance mined and delivered remotely 5. Cloud-Star Evolution: Where Cloud and Star Evolve to Fluency 6. Simulations in Diminishing Scale: The use of Ring and Lens 7. Simulations: Synergy Modifications: Mitigation in Risk Analysis 8. Simulations: Marking the Contingent Outcome: Marking Pivots and Lifts 9. Simulations: Making a Watch Case Window: Fielding the Position 10. Simulations: Branching with Partners: Partner Branching for Remote Position SSE CASCADE IMPACT SCOPE CLOUD-STAR Brij Consulting, LLC | SlideShare Part I: City Scale Part II: Remote Scale Part III: Confluent Scale SIMULATIONS P a p e rs i n D e s ign Se ri e s Part I, II, III Part I, II
  • 25. Brij Consulting, LLC Jean Marshall 1/25/2024 25 P a p e rs i n T e s t Se ri es 1. The Car and Road Test: Simulating Glass Cars and Candle stone Roads Brij Consulting, LLC | SlideShare V3 Glass Package V2 Synergy Modifications V1 Digital Testing Strabo Tying projects back to the Strabo Omega allows for Simulations Cloud to orchestrate outcomes Part I, From Slide 13 2. Home and Foundation Test: Simulating Glass Instances of Candle stone and Thread in Componentizations utilizing a legacy form of Glass 3. Glass Big Push: Legacy Glass gives way to Solid State Engineering, Instancing and Building with remote synchronization Parts I, and II/III Of Pillars and Pipes, Portals and Plaits Part I: Part II Simulations Marking
  • 26. 1. Portal Prosperity: An overview of Glass Theory and Ark Design develops property reconcilement for Conveyance 2. Crossover Conveyance: Beginning with Remote Signature, threading the advancing fingerprint with a glass path and integral site management, moving into SIMULATIONS in Real Time 3. Converge- The Remote Build: Tasks to consider the process of converging to the Remote Build Site and what considerations are given to producing a remote service or build out of a productive requirement, introducing sandbox theory. Phase I only considers the Kitchen Tech. Phase II is involved in whole home Media and Tech in Glass. Phase III develops the land and its attributes. This is three separate papers. 1/25/2024 Brij Consulting, LLC Jean Marshall 26 1. Studying T&MM: the requirement for certification of mobility for competent conveyances 2. Portal Projects: the evidence, timing and intelligent use of portals 3. Calling it Green: Components of Green Energy, short review: Calling it Green requires new uses of potential and ^studies in wave glass and graphical relationships can raise up a green energy fluency that will lead to energy self-sufficiency 4. Dimensions in Multivariant Fabrications: Determining Forms and Contents of Green Energy and Blue Wave Cascade; relating elements to current science and future requirements 5. Wave and Lens Assimilation: The means to compile and to build in Glass Systems is described. The use of secant math. 6. Math Solutions for Wave and Lens Assimilations: See also Commentary for Math Solutions 7. Supply Side Portfolio: Timing and Model of Glass and Green events to fulfill path… Does the Tan Line help? 8. Partners in T Pluribus Unum: Measuring with Diacritical Marks 1. Portfolio Wheels: Study of Secants and Wheels in the Dynamic requirement for Media to write and produce in Ark Science and Dimensional Systems, Introduction of the Story “Eru finds a Golden Pen.” 2. Ark Media: The Dialogue of the Story and the Construction of Storyboards, Mix and Remix specifications, beginning crosswalk and encryptions 3. Builds and Simulations: Discuss Matrix Trees, Migratory Patterns and the use of Secants to Build tooling 4. The Corner of Mu Sic: an update of our Digital Paper on Mu Sic to include Ark encryptions and design considerations 5. The Glass House: Magi and Marcus Engineering plans to invest in a Plait Glass facility for building and research in remote Ark Science. Start of Tooling and Secant Design for the Construction Industry 6. The Remote Build: Planning a Theoretical Production for untried Architecture 7. Glass Mix Z-Form: Production Walk-Thru Glass Mix and Forms, leads into the Write Process 8. Bridging the Instance: Now operating multiple instances must bridge the operations, learn about deciduous models and deliberate the outcome of operations for the 2022 Plan of Magi and Marcus 9. Architectural Builds and Designs: Looking into Delivery Mechanics and the Products themselves 10. Pipes and Plaits in Ark Mode Design: How the Plait Pipe System assists with Land Products. See Number Theory 11. Continuous Modeling: Moving away from the Contiguous Model to a strategy of seamless integration of methods and modes of operation. See Number Theory. 12. The Glass Warehouse: From Start to Finish the streamlined operations of the Marcus and Magi Engineering remote architectural process 13. Branch- Sound and Image Construction: Characterizing the branch capability of new applications, appliances and mode[ls] of operations 1. Ark in Glass: Changing the Schema for Ark Mode crossover, beginning study of Secants and Wheels for the “cube-ified glass” engineering of Imaging, sound and motion characteristics. 2. The New Stone: Simulations and Re-instancing to package, confect and view glass media 3. Dimensional Building: Dimensional Arrays, Z strength, Product Media, Interdimensional Matrices. 4. The Dynamic Instance: Product Media Discussed 5. The Glass Build: Base Build and Modules Assembled, considering impact of dimensional systems 6. Glass in the Making: Costing and Loading, Assembly and Assimilation, IP Defined, Logos 7. Art of the Science: What can be made? Assimilation discussed, look at basic product ideas 8. Digital Glass Production: Pipe Transit and RIK Declare, Batch Appliance (Dialogue paper) 9. Imposition of Value Engineering: Establishing and Justifying the Load for Pipe Transit 10. The Digital Plait Position: Engineering Design of the Load and Thruput 11. ^Mu Sic in the Advancing Age: Use of Fingerprint and Encryption for Operational Loads 12. Engineering Objects: The Purpose of this Paper is to Consider the means to raise up a Digital Portal Production System using appliances gained through Plait Object and Gate driven configurations that work with Digital Mechanics. Six-Layer Glass and Appliances 13. Instancing at the Gate: Use of Gates and Instances, bridging of the engineering process 14. Interpolative Scope: Use of a Demand and Production Scope for building and delivery of product, learning to specify material, looking for union of Vector 15. Functional Glass: Fitness for Function and Moral Intelligence, Bayesian Analysis 16. The Glass Wall: This is a very difficult staging of advanced engineering to depict …Motivated by sound it creates a means by sound to cascade light for safe and wireless power 17. The Glass Wave: Learning to Plait Gates, Reconcile Metrics to Scorecard, and load value of Scrum 18. Scrum Costing w/notes (Book It Daniel): establishing scrum standards (Dialogue paper) 19. Gate Plait Green (Mark It Mark): first scalable plait arrangement overcomes bottleneck (Dialogue paper) 20. Scorecard Integration (Map It Ralph): A review of mappings to date, marking old vs. new (Dialogue paper) Motion Projects-8 Remote Theory-5 Ark Model-13 Digital-20 Go to https://www.slideshare.net/Marshallja/presentations https://www.slideshare.net/Marshallja/commentary-for-math-solutions-for- wave-and-lens-assimilationpdf Roadmap: #47 & #48 & #49 Dimensional Building in Ark Design Glass Cars and New Product Roadmap Calendar Cartography Building with Glass #50 New Remote Theory Ark Model Motion Projects Building
  • 27. Simulations Project 1 2 3 1/25/2024 Brij Consulting, LLC Jean Marshall 27 Branching with Partners BUILDING in the World of Glass Systems 3110/MTh 1- Supply Chain 2. Productions 3. Simulations = B
  • 28. Simulations Project Glass Systems| Brij Consulting, LLC | Jean A. Marshall Branching with Portals 1/25/2024 Brij Consulting, LLC Jean Marshall 28 Stored Notes