The document contains a series of papers and presentations related to glass concepts and algorithms. The contents include discussions on topics such as momentum in glass building, impact engineering, continuous modeling, synergies, instancing, remote cloud assembly, simulations, portal design theory, metric maps, and the future projections of the glass plan. The papers also cover various aspects of glass production, including the use of solid-state engineering, green energy, wave and lens assimilation, and the development of remote architectural processes. Additionally, there are papers on the integration of glass with other technologies, such as media and tech in glass, digital production systems, and the use of gates and instances. The document also mentions the importance of certifications, securitization, and equity in the glass projects.
Comments on Step Into the World of Glass (All Parts).pdf
1. Step Into the
World of
Glass
Concepts and Algorithms that
Achieve Momentum
MDIA
Contents
V1TheWhat If of EverydayGlass
V2Working with the Synergism of Instancing
V3 Continuous Modeling and Symboletry
C.H.G.C.B.
1
2. Summary of Comments on Step Into the World of Glass
Building
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Number: 1 Author: Presenter Notes Subject: Presentation Notes Date: 4/30/2024 6:42:25 AM
The Scope of the 50-year Glass Plan is examined at length in its Continuous Modeling Phase. Momentum is founded on the synergism of the glass
strategy.
3. Momentum^ in the Build
• The Design of Glass contains the MOMENTUM
characteristic of the Build Equation.
• The Stream, Lift, and Syncopated Energy combine to
create a drive capability for both mobile and
operative appliance mechanics.
• At the level of Continuous Modeling, we come into
the Confluent Cloud Design that delivers a spectrum
of star computing power that builds in a STREAM.
Impact Engineering
• The Powers Equation is the Growth
Factor on the Financial Forward
(.22 x 2)^Square Pi
(.33 x 2)^Gate
Financial Forward
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Brij Consulting, LLC Jean Marshall 2
I. Overview
^Momentum is both the Moment of an Instance Assimilation
and the Momentum of multiple conveyances
See Slide 6 for Transitions and Slide 4 for
referential treatment of powers and bases
1
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We see that there is Momentum in what star-based portals and concepts can achieve and begin to look forward to this last phase of the Plan leading to a
continuous streaming media. The Powers Equation was found on the Forward
Statement of growth generated for Magi and Marcus.
5. .896 = algorithm
Summary from “Square Pi Key to the Investment”
+21.43= Synergy
(21.22) Market Share
.21 Market Share Gr =
.185 Demand SSE
+.028 Market
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+/- .003
+/- .003
I. Overview
See Slide 8
1
6. Page: 3
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The Burden lifted from the bottom line is redounding growth on the Assets of Magi and Marcus, with a robust yield on equity. Can we make a Metric Map
that responds to a what if scenario, we have yet to see in Part II. It could be that the double down method is preventing the loss from the zero-sum
equation by generating another load from the margin differential of 142 on the select value of financial exchange, thus shielding the burden carriage to
asset production.
7. Digital Growth onVirtual Assets
• TheWarehouse Development
and Secant Engineering points
to the growth in the
Investment
• TheTrig relationship shows
that more is distributed into
the investment coming from
income and burden
assimilations
α .535 x 2 = 1.07
1.094392 – 1.0920015 = .00239x2 = .00478 x 10^3
4.78
4.43
Powers Equation .66 (2 x .33) and .44 (2 x .22)
4.44-4.11
= .33
A number becomes a power when
it is associated with frequency
A number becomes a base when it is
assimilated to foundation or wall
SupplyChain impact
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Square Pi
Impact of Production 95.3 R +.3
Slide 9
Iterative Results
αλ
I. Overview
R+, slide 5
1
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Number: 1 Author: Presenter Notes Subject: Presentation Notes Date: 4/30/2024 6:42:30 AM
The supply chain lifted burden from the income statement to the Balance Sheet through an improved simulations portfolio that acquired growth from the
wall technology. Events that we hoped would produce growth are seen metrically with power in their frequency.
9. Data Story shows that hyD has lower
growth than overall Magi and Marcus glass
works, and the payback is lower on the
lower demand curve.
P
5.128 x 2 = 10.256 x 2 = 20.512 -20.646 = .134 + .0018 Ev curve outcome
97.76 x 2 - 10 = 185.52 + .073
Demand Outcome
Lower Demand shows Lower Interior
Margin- small frame indicated
Square Pi
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5
See Slide 8
775~
DATA STORY: Financial Growth
Ev
Regression result
(ROI, Stats Slide 11, Part II)
αλ
*Chi and Rho are
both involved in
the process, Chi
being the map or
image and Rho
being the
Demand or
cyclical event;
Chi + Rho = 1.28 +
1.80 = 3.08 + .5
alpha = 3.13
build. Z is part of
Chi dimension.
+Chi= 1.28168
αλ
.620281 x 2 = 1.245254288 +
.04112676 = Chi estimate
1.28168876
R
Price Margin
demand
relationship
Argument for
Slide 4, 9
C-B 2.6227 –
Chi 1.28168
=1.34102 + .018
ANOVA
DATA
R+
1
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We noticed a loss of chi in intellectual property occurred as hyD was sold to the Green Motors Group. The remainder likely due to the lower demand scale
of the rho value. The production R value was estimated as 953 which is the minimum for production achievement and satisfactory.
11. Brij Consulting, LLC Jean Marshall 4/30/2024 6
• Instancing takes place
in vector space across
portals through
simulations. This
infrastructure is a star
base structure with
energy star, stream and
lift characteristics.
• Instancing is an
arrangement capable
of multiple synergies
and associated
divisions.
• Thus, if instancing is to
continue as a portal
arrangement it must be
partitioned.
• The Events transition
to a cloud warehouse
or portal engagement.
• Three Transitive Stages
associated with Instances:
See A,B,C shown
Energy Star:
Stream and Lift
Multiple Synergies
and associated
divisions of stars
Partitioning Events
and transition
outcome Certification
Beta
Alpha
from “Square Pi Key to the Investment”
Θ+3 Ratio = .100035
1
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Instancing is a prime focus of this paper as it is necessary to learn how to manipulate instances and achieve complex builds within the transitive stages of
ark science and portal delivery. Multiple synergies are required to benefit solid state engineering and complex builds required in Phase IV of the plan.
13. • Our papers have taken the tact that
utilities are primarily devised to
support the efforts of mankind to
increase the adaptive cause of the
progression of intelligent design.
Thus, the utility is supplied as a
supportive benefit to society.
• However, knowledge of the portal
and its development allows
mankind to progress within the
Eternal Plan and Morning Star
association.
Brij Consulting, LLC Jean Marshall 4/30/2024 7
from “Square Pi Key to the Investment”
^ This starting synergism is the beginning of the portal construction which
holds instances at abeyance in its hollow center for construction moments
^
Why do the 24 elders cast down their golden crowns?
1.They deliver a series of events 2.They associate synergy to the project from transitional stages
3.They manifold assimilations 4.They assemble resonance for the composition of Moments
Thought for the day:
Momentum
Our Lady
Of Mt. Carmel
1
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We noticed complex building requirements in portal arrangements with the wall, and starting this design recognized our need to think through the
process with more deliberation on this topic. The whole idea of Ark Transitions is contained in it.
15. Brij Consulting, LLC Jean Marshall 4/30/2024 8
See Slide 3,5
See Slide 5
• The Square Pi metric
becomes useful to the
design of continuous
modeling.
• The difference in our
Metric Map in the
Interior Margin or IM
is the demand scale
of the hyD portfolio.
• HyD’s portfolio is
resting on a lower chi
version than other
production
requirements and
requires a large frame
contributor to
prosper.
• Economy of Scale is
still a problem in glass
mix and forms
method and requires
more transitive
attribution.
• SPO = Scalable,
Portable and On-
Demand
from “Square Pi Key to the Investment”
I. Overview
Summary: The hyD division in our case emulation was sold to the Big Auto Makers
for a reasonable price and along with synergy gained from their process assimilation
resulted in 50 Billion gain for Magi and Marcus, our Engineering company.
The next requirement is to use these funds
constructively for the last phase of Magi and
Marcus, Eng. Role in the Project Plan
1
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The Sale of hyD benefited Magi and Marcus substantially permitting them to apply the sale proceeds to new asset requirements for the complex builds
they need to perform.
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• The composition of
the Forward Design
is dependent on the
legitimate properties
which are
assimilating the
business value in the
marketplace.
• The loss of hyD’s
intellectual property
has caused a slightly
lower cost-benefit
ratio.
• The funds acquired
from the sale of the
hyD division will be
applied to the
equipment required
for Magi & Marcus to
perform complex
instancing and to go
remote.
• Build of assets is the
double-down
economic effect of
glass systems.
from “Square Pi Key to the Investment”
I. Overview
This estimate of the cost benefit ratio suggests that
Production value of R+ is the cause of the lower ratio.
Map scale is different here. See Slide 5
This is our Strabo Marker!
Should we move past it? See Part II
Value Added
Future Cash
Conversion
hyD Synergy
21.22 + 26.6 = 47.8 + .36 = 48.16
1
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The mapping of the close of the SSE process of solid-state engineering coincides with the hyD sale and the impact on the statement is a good example of
the synergy produced by the portals. Without the inclusion of cash from
The hyD arrangement the visibility of the cost benefit ratio helps to discover a relationship to secant engineering and supply chain that would easily be
overlooked.
19. Phase IV Engineering
Requirements
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• The development of the Plan is such that the
Continuous Modeling begins when the
Network is assimilated for remote building
and the solid-state configuration is now
available.
• Continuous STREAMING media of this
dimensional design is available closer to the
end of the plan when all partners and
affiliates have onboarded their wares.
• Magi and Marcus will begin their remote
works including the building up of the
Installer Business, and the Glass Community
Developers Model.
• There is more SMARTTechnology streaming
in homes and business at this point.
II. Adaptations
To do:
1. Determine specified asset
requirements
2. Review the use of
Instances and market
arrangements
3. Remote Cloud Assembly
4. Write a New Forward
What If?
Algorithms
What Next?
Projections
NOTES: Magi & Marcus
need to setup a
securitized contingency
reserve with their new
synergy gain so that
they can blend back
into the Strabo Plan
1
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In Part II we want to approach What if? And What Next? Scenarios with continuous events. Also, we want to consider momentum in the digital to ark
design.
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hyD is
somewhat
short on price
but the load
equation
makes up the
difference
142 x 2 =284
In its rightful
market position,
they feel that hyD
will exceed its
former earnings
shortfall.The
Green Motors
Group Agreed.
Earnback from Magi & Marcus is applied to Goodwill
hyD drew in a lot of business for M&M
Good
Thinking
pays them
back!
M&M = 5.0916
hyD = 5.0898 hyD is not getting enough conversion
amplification at this scale of work, short of
the applied standard.
Load value
Value Added
Future Cash
Conversion
1
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hyD Division was a little short on price and all of our numbers bear this out, but Magi & Marcus presented their discussion about Goodwill to the Green
Motors Group, and they agreed to the Pricing arrangement. This way Magi & Marcus recovered their earnback. But they have staked their reputation on
it, can we be certain that Green Motors Group can assemble this large frame performance? It is up to the Big Auto Makers to do their part.
23. WI andWN
• INSTANCE
ALGORITHMS are a
simulation story
not a definition
• WI: How long until
hyD recovers their
conversion process
• WN:When will
M&M build
remotely?
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What If?
Algorithms
70%
Data
What Next?
Projections
REGRESSION
DATA
This Financial Data is used for a What Next
Projection of the likely results of Transitions
1
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The concept of What If? And What Next? Takes the metrics of transition to the next level of adaptation with the Plan. Using our original algorithms, we
continue to develop the plan by understanding its phases through specified endpoints.
25. Brij Consulting, LLC Jean Marshall 4/30/2024 13
WI
2028 +5 years
WI: How long until
hyD recovers their
conversion process
WN: How long until
M&M builds
remotely… 18 years
…From 2028
What Next?
Projections
What If?
Algorithms
New Algorithm
BigTransitions
1
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We answer two questions by developing transitions according to the parameters set within the project and the next phase of the requirements. We
calculate that hyD will require their full conversion process in 2033, in time for their bid on a car model of their own. Magi and Marcus will not build
remotely until 2046 and in the meantime will begin to work on build case requirements with the Installer Group they hope to promote internally.
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Magi & Marcus Transitions
Assets
Market
[21.22 + 26.6] = 47.8 + .36 = 48.16, see slide 9 or [21.6 + 26.21] in other combination
Potential Market
Share
-26.05 x 2 = -52.1 x 2 = -104.2 Frame Reduction increasesTransition -10 = -114.2
LIFE Securitization: Equity Certified for Life of the Project
To do:
Determine specified asset
requirements
Review the use of
Instances and market
arrangements
1. Remote Cloud Assembly
2. Write a New Forward
Market Potential is also secured with this
certification because the Market is in Union with the
Advancing Plan of God (Morning Star Attribution.)
*
*
EV
Index = [1000+(481x2)]=1962
PAYBACK
1
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It is necessary to specify an investment in the Installer Business, Portal Increases and other cost associated changing their financial statement. In view of
their new requirements this portion of the plan is serialized and also securitized promising that the equity gained in the Plan will never be compromised,
and their market position made secure in the advancing Plan. This set up a series of financial tasks we completed partially in Part II of this paper.
29. v
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To do:
Determine specified asset
requirements
Review the use of
Instances and market
arrangements
1. Remote Cloud Assembly
Write a New Forward
All GlassTransitions
LIFE Securitization:All Equity Certified for Life of the Project
Equity Certifications
Labor is moving to the Balance Sheet because virtual
assets are produced on a subscription basis
producing a more substantial Equity Arrangement.
507.44 – 507.1798 = .2602 Indexed
15
Index [1000+(481x2)]=1962
1
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We specified a new forward based on the Magi & Marcus Transition and developed a new foundational approach to their equity portfolio, securitizing the
three parts separately. Here also we see the perfect example of the burden
Level being caried up to the Balance Sheet where it will help to prosper equity better and make the earnback on labor a means to secure their equity
participation.
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What NextTransitions
^Probability,Slide 12
^
^
In preparing the
What Next
Projection we are
only using the
trajectory and not
planned events
Stochastic data by its nature is flat. This will supply the
inference of growth attributable to the events.
*
*
BUILD RATIO + 181.42 x 2 = 362.84
1
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Creating a What Next Transition for the Glass Plan helps to measure the level of events transitioning with it.
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What kind of events do we need to
Transition?We will study this
effort in Part III:Transition
Storybook, we need to tell the
story of the Plan in a way that
completes its imposing criteria
Potential
Market Share
443.1 Square Pi
442.59Transition
= .41 LeadTime
To do:
1. Remote Cloud Assembly
2. New Metric Maps
3. Scrum Performance
Index [1000+(481x2)]=1962
PAYBACK
1
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In order to determine the next series of events and their transitional requirements we need to assess this period, create a new metric map for various
transitions and develop scrum performance statements. We need to
Discuss a remote cloud assembly with the same deliberation as portal arrangements as an ongoing part of the project. It is necessary to note that (E)
Frames shift in Transition, but the analysis does not change Equity Certification.
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Phase IV Engineering
Requirements
• Continuous STREAMING media of this
dimensional design changes the content of
the work to a continuous adaptation.
• A Storybook tells the story of what will be
delivered within segments of the confluent
arrangement that also begins
III. Storybook
All Glass
A Castle has
more than one
house in it Continuous
Modeling
Intelligent
Design
Replication
Synergism
Transitions
Blueprint of
the Soul
Glass
Institute
Coming….
Transitional
1
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In Part III the Confluent Design spectrum has the better of us as we notice there is a fluency possibility in the star cloud method. The Design implications
are conversion capabilities. But moreover, we point out the blueprint for the soul, hidden in the picture of Divine Mercy and adaptations to Life Eternal.
37. More to
Come…
Brij Consulting, LLC Jean Marshall 4/30/2024 19
• Big Branch: the far-reaching aspect of the Plan
To do:
1. Remote Cloud Assembly
2. New Metric Maps
3. Scrum Performance
12 Parts 12 Maps
Coming Next…
1
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More to come on far reaching ratios and the big branching part of the Plan
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Our Next Paper will highlight the remaining tasks as an Investor Portfolio
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The various assembled parts of the plan in the original strategy are shown.
45. Scorecard
Arrangements:
1. Field Leveling
2. Drivers and
Gears
3. KPI’s and
ScrumTasks
4. SPO: Scalable,
Portable and
On-Demand
1. Glass Outcomes from
Double-Down
2. DigitalGrowth
3. Rules for Synergism
4. Portal DesignTheory
5. Metric Map
6. Plan Disposal and Fair-
TradeArrangement
Recent Papers on Project
Valuation and Scorecard
Arrangements
Brij Consulting, LLC | SlideShare
1
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Contents generally deliver a powerful and unique knowledge of the overall portal plan and capability to manage complex glass operations
47. Brij Consulting, LLC Jean Marshall
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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
Papers in Design Series
Part I, II, III
Part I, II
1
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Papers in the design series focus on simulations and specifically Part I: City Scale, Part II: Remote Scale and Part III: Confluent Scale. We will begin to
highlight the vector requirements for tasking in our current model and the need for lens facets for scale differentiation. Then in Part II define simulations
reporting. In Part III we begin to move past forms and mix to the confluent modeling of the Ark Science of Glass in the Advancing Age to come. We
continued our Simulations Project with mitigation of Risk in the crossover period through the use of Gap Data.
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Papers in Test Series
1. The Car and Road Test: Simulating Glass Cars and Candle stone Roads
Brij Consulting, LLC | SlideShare
V3 Glass Package
V2 Synergy Modifications
V1 DigitalTesting
Strabo
Tying projects back to the Strabo Omega
allows for Simulations Cloud to orchestrate
outcomes
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
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We look at testing of glass and various forms and methods to begin plan phases (not specific engineering dogma.) We begin with Model O as a sample of
car and road synchronous behavior. Then we will consider testing home and foundation and green energy and candle stone surfaces. We want to look for
the means to tie back into STRABO and Simulations Model for Agile playback. The Third testing paper will close the gap between legacy glass and solid-
state assimilations which develop into remote planning and building tools. In the Second Part of the Third Test Paper, Glass Big Push, we examine the
types of events or changes that impact the Simulation of the Project Performance.
51. 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.
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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
1
52. Page: 26
Number: 1 Author: Presenter Notes Subject: Presentation Notes Date: 4/30/2024 6:42:55 AM
The Learning Series