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Noah Shanti Phones & Addresses

  • 1486 Sterling St S, Saint Paul, MN 55119 (262) 573-3109
  • 111 Kellogg Blvd E #B, Saint Paul, MN 55101
  • Maplewood, MN
  • Chicago, IL
  • 7208 Clifford Dr, Hartford, WI 53027
  • Ramsey, MN
  • 1486 Sterling St S, Saint Paul, MN 55119

Work

Company: 3m Aug 2010 Position: Senior materials scientist

Education

Degree: PhD School / High School: Northwestern University 2005 to 2010 Specialities: Materials Science and Engineering

Skills

Nanotechnology • Ceramic • Materials Science • R&D • Project Management • New Product Introduction • Design of Experiments • Nanomaterials • Inorganic Materials • Ceramic Materials • Ceramic Processing • Fracture Mechanics • Silicon Carbide • Diamonds • Cvd • Thin Films • Thin Film Coating • Composites • Cmp • Semiconductor Industry • Semiconductors • Chemical Mechanical Polishing • Consumer Electronics • Acoustics • Thermal Management • Characterization • Materials

Languages

English

Interests

Education

Industries

Research

Resumes

Resumes

Noah Shanti Photo 1

Senior Technical Supervisor, Corporate Research Process Laboratory

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Location:
Minneapolis, MN
Industry:
Research
Work:
3M since Aug 2010
Senior Materials Scientist

Northrop Grumman Corporation Jun 2005 - Aug 2005
Technical Intern

Northrop Grumman Corporation Jun 2004 - Aug 2004
Technical Intern
Education:
Northwestern University 2005 - 2010
PhD, Materials Science and Engineering
University of Michigan 2001 - 2005
B.S., Materials Science and Engineering
Skills:
Nanotechnology
Ceramic
Materials Science
R&D
Project Management
New Product Introduction
Design of Experiments
Nanomaterials
Inorganic Materials
Ceramic Materials
Ceramic Processing
Fracture Mechanics
Silicon Carbide
Diamonds
Cvd
Thin Films
Thin Film Coating
Composites
Cmp
Semiconductor Industry
Semiconductors
Chemical Mechanical Polishing
Consumer Electronics
Acoustics
Thermal Management
Characterization
Materials
Interests:
Education
Languages:
English

Publications

Us Patents

Articles Comprising Ceramics And Method Of Making The Same

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US Patent:
20210078908, Mar 18, 2021
Filed:
May 10, 2018
Appl. No.:
16/611906
Inventors:
- St. Paul MN, US
Jason D. Anderson - Richfield MN, US
Noah O. Shanti - Maplewood MN, US
Fabian Stolzenburg - Woodbury MN, US
Jean A. Tangeman - Minneapolis MN, US
International Classification:
C04B 35/50
C04B 35/44
C04B 35/64
Abstract:
Ceramic comprising at least one polycrystalline metal oxide and amorphous phase, wherein the metal oxide comprises crystals with grain boundaries and triple points, wherein the amorphous phase is present at the grain boundaries and triple points. Exemplary articles made by a method described herein include electronics enclosure (e.g., a watch case, cellular phone case, or a tablet case).

Method Of Making Polymer Matrix Composites

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US Patent:
20200347200, Nov 5, 2020
Filed:
Nov 15, 2018
Appl. No.:
16/760468
Inventors:
- St. Paul MN, US
Jeanne M. Bruss - Cottage Grove MN, US
Bharat R. Acharya - Woodbury MN, US
Brandon A. Bartling - Woodbury MN, US
Michael S. Graff - Woodbury MN, US
Noah O. Shanti - Maplewood MN, US
Fabian Stolzenburg - Woodbury MN, US
Satinder K. Nayar - Woodbury MN, US
International Classification:
C08J 9/28
C08J 9/00
C08K 3/22
Abstract:
Method of making a polymer matrix composite comprising a porous polymeric network structure; and a plurality of particles distributed within the polymeric network structure, the method comprising: combining a thermoplastic polymer, a solvent that the thermoplastic polymer is soluble in, and a plurality of particles to provide a slurry; forming the slurry in to an article; heating the article in an environment to retain at least 90 percent by weight of the solvent, based on the weight of the solvent in the slurry, and inducing phase separation of the thermoplastic polymer from the solvent to provide the polymer matrix composite.

Acoustically Active Materials

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US Patent:
20200095392, Mar 26, 2020
Filed:
Jun 11, 2018
Appl. No.:
16/616157
Inventors:
- St Paul MN, US
Derek J. Dehn - Maplewood MN, US
Fabian Stolzenburg - Woodbury MN, US
Noah O. Shanti - Maplewood MN, US
International Classification:
C08J 9/00
C08J 9/28
C08K 3/22
C08K 5/01
G10K 11/162
Abstract:
A polymer matrix composite includes a porous polymeric network structure; and a plurality of acoustically active particles distributed within the polymeric network structure. The weight fraction of acoustically active particles is between 0.80 and 0.99, based on the total weight of the polymer matrix composite. The polymer matrix composite has an air flow resistance of less than 100 seconds/50 mL/500 μm.

Pad Conditioner With Spacer And Wafer Planarization System

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US Patent:
20190337119, Nov 7, 2019
Filed:
Dec 18, 2017
Appl. No.:
16/470571
Inventors:
- St. Paul MN, US
Po Cheng To - New Taipei City, TW
Noah O. Shanti - Maplewood MN, US
International Classification:
B24B 53/017
B24B 37/24
B24B 37/26
B24D 18/00
H01L 21/321
H01L 21/67
Abstract:
A pad conditioner includes a carrier, at least one abrasive element, and a spacer. The carrier includes a surface with an exposed region and a plurality of mounting regions. The abrasive element is disposed on the mounting region of the carrier, and at least one abrasive element has a working surface including a plurality of features each having a distal end. The spacer is disposed on the surface of the carrier and covers at least a portion of the exposed region. The spacer has a first surface and a second surface, wherein the second surface is opposed to the first surface and adjacent to the surface of the carrier. The distance D between the distal end of the highest feature of the at least one abrasive element and the surface of the carrier is greater than the distance D between the first surface of the spacer and the surface of the carrier.

Conductive Particles, Articles, And Methods

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US Patent:
20190326031, Oct 24, 2019
Filed:
Dec 19, 2017
Appl. No.:
16/472148
Inventors:
- St. Paul MN, US
Kenton D. Budd - Woodbury MN, US
Dipankar Ghosh - Oakdale MN, US
Noah O. Shanti - Maplewood MN, US
International Classification:
H01B 1/22
C09J 11/08
C09J 9/02
C08K 9/08
C08K 7/28
C08K 3/40
C08K 3/34
Abstract:
Conductive particles, articles including such particles, and methods of making such conductive particles, are provided; wherein the conductive particles include: a core particle including at least one of a glass, a glass-ceramic, or a metal; surface particles adhered to the core particle; and a metal coating disposed on at least a portion of the core and surface particles; wherein the core particle is larger than the surface particles.

Acoustically Active Articles

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US Patent:
20190016643, Jan 17, 2019
Filed:
Dec 22, 2016
Appl. No.:
16/064501
Inventors:
- St. Paul MN, US
Qin Lin - Woodbury MN, US
Noah O. Shanti - Maplewood MN, US
Marc D. Radcliffe - Newport MN, US
Ronald W. Gerdes - St. Paul MN, US
International Classification:
C04B 38/00
C04B 35/14
C04B 35/524
C04B 35/634
H04R 1/28
Abstract:
Articles and methods of making and using the articles are provided. The articles include inorganic agglomerates having an average dimension in a range from about 50 microns to about 2 mm. The porous agglomerates each include a network of carbon or silica, and metal oxide particles embedded in the network. Some agglomerates are capable of lowering a resonant frequency of an acoustic device when the resonant frequency is in a range from about 50 Hz to about 1500 Hz.

Articles Comprising Crystalline Materials And Method Of Making The Same

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US Patent:
20180327300, Nov 15, 2018
Filed:
May 10, 2018
Appl. No.:
15/976392
Inventors:
- St. Paul MN, US
Jason D. Anderson - Richfield MN, US
Noah O. Shanti - Maplewood MN, US
Fabian Stolzenburg - Woodbury MN, US
Jean A. Tangeman - Minneapolis MN, US
International Classification:
C03B 19/06
C03C 10/00
C03B 23/00
Abstract:
Methods for making articles comprising crystalline material. Exemplary articles made by a method described herein include electronics enclosure (e.g., a watch case, cellular phone case, or a tablet case).
Noah O Shanti from Maplewood, MN, age ~41 Get Report