
|Articles|December 1, 2016
- Spectroscopy-12-01-2016
- Volume 31
- Issue 12
Verder Scientific Inc
Advertisement
Company Description
Verder Scientific, Inc., sets the standards in high-tech scientific equipment for quality control, research, and development. The company manufactures and supplies laboratory instruments for sample preparation and heat treatment of solid materials. Comprised of the Retsch and Carbolite product brands, Verder Scientific, Inc., is the market leader in sample preparation and treatment.
Chief Spectroscopic Techniques Supported
- XRF
- XRD
- NIR
Markets Served
- Pharmaceutical
- University
- Government
- Cosmetics
vFood & Beverage
- Agriculture
Major Products/Services
- Laboratory sample preparation
- Heat treatment equipment
Verder Scientific, Inc.
11 Penns Trail, Suite 300,
Newtown, PA 18940
TELEPHONE
(866) 473-8724
FAX
(267) 757-0358
WEB SITE
NUMBER OF EMPLOYEES
12
YEAR FOUNDED
2000
Articles in this issue
almost 10 years ago
Raman Thermometryalmost 10 years ago
FT-IR Microscopy with High Spatial Resolutionalmost 10 years ago
Analysis of Metals in Aerosols on Air Filtersalmost 10 years ago
Failure Analysis of Packaging Materialsalmost 10 years ago
Pesticide Detection Using SERS Techniquesalmost 10 years ago
ABB Measurement Analyticsalmost 10 years ago
Anton Paar USA Incalmost 10 years ago
Avantes Incalmost 10 years ago
art photonics GmbHAdvertisement
Related to this article

Top content published this week include a feature article on a new innovation called the Personalized Optical Digital Twin (PODT), a recap of the International Conference on Raman Spectroscopy (ICORS) 2026 show, and a Q&A on measuring nanoparticle formation in indoor air.

In the final part of our conversation with Brandon Boor of Purdue University, he explains the respiratory deposition model his team used to analyze indoor particle exposure.

In the second part of our interview with Brandon Boor of Purdue University, he discusses how his team controls experimental variables during cleaning experiments in order to obtain interpretable data.

An upcoming interview with Ji-Xin Cheng, a Theodore Moustakas Distinguished Professor in Photonics and Optoelectronics at Boston University, will highlight his ongoing work in coherent Raman scattering microscopy.

The bulky bench-top NIR spectrometer is quietly being dismantled and rebuilt as a wafer-scale photonic chip, a self-calibrating algorithm, and a sensor small enough to ride in a shirt pocket. What once demanded a grating, a moving mirror, and a climate-controlled lab now fits inside a handheld module, a bioreactor probe, or a drone payload, and it increasingly figures out what it is looking at on its own.

In the first part of a multi-part Q&A, Brandon Boor, the Dr. Margery E. Hoffman Associate Professor in the Lyles School of Civil and Construction Engineering at Purdue University, describes the instrumentation and methodology behind measuring nanoparticle size distributions at the nanocluster scale (1–3 nm) and outlines the technical challenges of acquiring reliable, real-time data at these dimensions.

Reliability, dynamic measurements, artificial intelligence, and real-world applications are reshaping Raman spectroscopy – while Molecular Photonics points toward new translational frontiers.
Advertisement
Advertisement
Trending on Spectroscopy Online
1
Vanishing Spectrometers: How Near-Infrared Instrumentation Got Small, Smart, and Everywhere
2
How to Monitor Indoor Air Quality Effectively
3
Best of the Week: The Personalized Optical Digital Twin, Recapping ICORS 2026
4
From VOC–Ozone Reactions to Respiratory Deposition: Unraveling Indoor Particle Exposure
5

