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Late Nite Labs recreates a traditional lab environment offering an authentic, accessible experience that moves learning beyond the classroom. Highly versatile, Late Nite Labs’ open-ended platform is easily customized to meet a wide variety of teaching styles and course requirements. Our labs give students the freedom to experiment and learn from their mistakes—at their own pace, at any time or place. Conduct experiments with state of the art instruments. Upload photos, videos, and files with the media player. Keep track of progress with the lab log and timer. Lab manual includes background, procedures, and a note-taking section. Use all the chemicals, compounds, containers and instruments you’d find in a wet lab. No goggles needed. Throw out materials when you’re done. Grab new ones when you need them. HIGHLY IMMERSIVE DIGITAL SCIENCE LABS

HIGHLY IMMERSIVE DIGITAL SCIENCE LABS · the lab log and timer. Lab manual includes background, procedures, and a note-taking section. Use all the chemicals, compounds, containers

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Page 1: HIGHLY IMMERSIVE DIGITAL SCIENCE LABS · the lab log and timer. Lab manual includes background, procedures, and a note-taking section. Use all the chemicals, compounds, containers

Late Nite Labs recreates a traditional lab environment offering an authentic, accessible experience that moves learning beyond the classroom. Highly versatile, Late Nite Labs’ open-ended platform is easily customized to meet a wide variety of teaching styles and course requirements. Our labs give students the freedom to experiment and learn from their mistakes—at their own pace, at any time or place.

Conduct experiments with state of the art instruments.

Upload photos, videos, and files with the media player.

Keep track of progress with the lab log and timer.

Lab manual includes background, procedures, and a note-taking section.

Use all the chemicals, compounds, containers and instruments you’d find in a wet lab. No goggles needed.

Throw out materials when you’re done. Grab new ones when you need them.

HIGHLY IMMERSIVE DIGITAL SCIENCE LABS

Page 2: HIGHLY IMMERSIVE DIGITAL SCIENCE LABS · the lab log and timer. Lab manual includes background, procedures, and a note-taking section. Use all the chemicals, compounds, containers

BIOLOGY LABS• Acids, Bases and pH Buffers • Bacteria Cultures and Antibiotics• Biological Molecules • Cell Structure and Function • Cellular Respiration • Diffusion and Osmosis • DNA Analysis in a Paternity Case• Ecology • Evolution of Island Lizards• Expanded Diffusion and Osmosis• Fungi• Genetics of Corn• Introduction to Late Nite Labs Biology• Mammalian Tissues• Mitosis and Meiosis• Photosynthesis• Plant Reproduction• Plant Structure and Function • Protists• Quantitative Analysis of Enzyme Activity • The Earthworm• The Scientific Method

MICROBIOLOGY LABS• Antibiotic Sensitivity• Bacterial Growth• Bacterial Transformation• Basic Microscopy• Biochemical Characterization• Control of Bacterial Growth• Cultivation of Microorganisms• Expanded Bacterial Growth• PCR of 16s rRNA Gene• Staining• Unknown Identification

PHYSICS LABS• Buoyancy• Centripetal Force • Conservation of Energy • Conservation of Momentum • Error Analysis• Free Falling Bodies • Harmonic Waves • Hooke’s Law • Newton’s Second Law • Torque • Two-Dimensional Kinematics

CHEMISTRY LABS & CATEGORIESBasic Principles• Chemistry Demo• Laboratory Skills• Sample Lab• Titration Tutorial

Properties of Matter• Characteristic Properties – Melting and Boiling Points• Chemical Reaction Types and Their Equations• Conservation of Mass• Density – A Characteristic Property• Flame Test• Identifying Unknown Substances From Characteristic Properties• Law of Definite Proportions • Molar Mass of Magnesium• Radiation• Separating a Mixture of Compounds

Chemistry of Solutions• Molecular Weight by Freezing Point Depression• Precipitation Titration of Cobalt Chloride• Temperature Dependence of Salt Solubility

Stoichiometry of Chemical Reactions• Decomposition of Malachite• Empirical Formula of a Hydrate • Empirical Formula of Copper Oxide • Limiting Reactant and Excess Reactant • Mole to Mole Relationship Between Cu and Ag • Stoichiometry by Loss of CO2 • Stoichiometry of an Acid-Base Reaction• Synthesis of Aspirin

Acids and Bases• pH indicators • Standardization of a NaOH Solution • Titration of Strong and Weak Acids Gas Laws• Apparent Molecular Weight of Air• Avogadro’s Law• Boyle’s Law • Charles’ Law• Determination of Absolute Zero• Molar Volume of an Ideal Gas• Pressure and Stoichiometry • Volume of Air as a Function of Temperature

Qualitative Analysis• Alka Seltzer Strength • Qualitative Analysis of Group I Cations

Thermochemistry• Enthalpy Change for the Decomposition of Ammonium Chloride• Enthalpy Change of a Chemical Reaction

Redox• Alcohol Content of Vodka by Dichromate Titration• Analysis of Hydrogen Peroxide Solutions • Identifying Halide Ions • Oxidation States of Manganese • Vitamin C Content of Juices

Spectrophotometric Analysis• Quantitative Determination of Food Dyes in Powdered Drink Mixes• Spectrophotometric Analysis of Copper

Biochemistry• Chemistry Biological Molecules and Chemistry Enzymes