Simplify your experimental setup with the Go Direct Current Probe. It connects wirelessly via Bluetooth® or wired via USB to your device. The wireless connection eliminates additional cables that can clutter the lab bench.
Capture small currents like those produced by a magnet falling through a coil.
Use in combination with the Go Direct Voltage Probe to investigate Ohm’s law or series and parallel circuits.
Explore RC and RLC circuits.
Rechargeable Battery—Ready When You Are
The Go Direct robust rechargeable battery offers long battery life and provides always-ready operation. Monitor battery life directly from our free Graphical Analysis™ 4 app. Should the battery run low, simply connect the sensor to the charging cable and keep on collecting—no interruptions or inconvenience to you or your students. Our Go Direct sensors connect directly to your mobile device, Chromebook™, or computer using our free Graphical Analysis™ 4 app—no additional equipment or software purchases are necessary. Go Direct sensors can be used wired via USB or wirelessly via Bluetooth, allowing you to choose the solution best for your classroom or laboratory.
Betriebsystem:
Android, Chrome, LabQuest 2, Mac OSX, Win, iOS
Bildungsstufe:
Tertiäre Bildung, Zyklus 3
DataLogger Schnittstellen:
LabQuest
Fach:
Chemie, Physik, Vernier
Hersteller:
Vernier
Schnittstelle:
BlueTooth, USB
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Containing 40 experiments, Physical Science with Vernier is perfect for introductory physical science and integrated science classes.
Physical Science with Vernier contains 40 ready-to-use experiments for physical science (middle school through grade 10). Experiments are included for 9 Vernier physical science sensors in chemistry and physics. These experiments are perfect for introductory physical science and integrated science classes!
Use this set of rods with the Instrumentation Amplifier and the Current Probe to investigate electrical resistance as a function of conductor length, diameter, and material. This lab is featured in our Advanced Physics with Vernier - Beyond Mechanics lab manual.
The kit includes four brass rods with different diameters and four other metal rods that have the same diameter as one of the brass rods. Each rod is 46 cm long.
TYPEDIAMETERLENGTH
Brass
2.38 mm (3/32″)
46 cm
3.18 mm (1/8″)
3.97 mm (5/32″)
4.76 mm (3/16″)
Stainless Steel
3.18 mm (1/8″)
Music Wire
Aluminum
Copper
Der neue Spannungssensor ist vor allem für die Erforschung grundlegender Prinzipien der Elektrizität geeignet, einschliesslich Parallel- und Serienschaltungen.
Ideal für Messungen in den meisten Batteriestromkreisen.
Kann in Gleich- und Wechselstromkreisen verwendet werden.
In Verbindung mit einem Stromfühler zum Erforschen des Ohm'schen Gesetzes.
Spezifikationen
Messbereich: ±15,0 V
max. zulässige Spannung: ±15 V
typische Auflösung: 0,5 mV
Anschlussmöglichkeiten: Bluetooth 4.0 (drahtlos) oder USB (kabelgebunden)
Beinhaltet:
Go Direct Voltage Probe
Micro USB Cable
The Go Direct™ Charge Station is the perfect solution for charging your Go Direct Sensors. Each charge station has sixteen charging ports—eight USB and eight wand-style sensor ports. LED lights on the Go Direct sensors will show charging status. The Go Direct Charge Station is also compatible with Go Wireless devices. USB cables not included.
Diese Halterung passt zu den meisten unserer kastenförmigen Go Direct®-Sensoren. Befestigen Sie die Halterung an unserer Zubehörstange oder einem Stativ mit Standard-Kamerahalterung, um den Sensor ruhig und stabil für wiederholte Messungen zu halten.
Chemistry with Vernier is the foundational chemistry book for high school and college courses.
Chemistry with Vernier has more than 36 experiments in thermochemistry, gas laws, acid-base reactions, equilibrium, electrochemistry, electrolytes, states of matter, and more. Experiments are included for the Gas Pressure Sensor, Temperature Probe, pH Sensor, Conductivity Probe, Colorimeter, and Voltage Probe.
If you teach Advanced Placement (AP), International Baccalaureate (IB), or college chemistry, you should also consider Advanced Chemistry with Vernier (CHEM-A) and Investigating Chemistry through Inquiry (CHEM-I).Table of ContentsExperimentSuggested Products1Endothermic and Exothermic ReactionsGo Direct® Temperature Probe2Freezing and Melting of WaterGo Direct® Temperature Probe3Another Look at Freezing TemperatureGo Direct® Temperature Probe (2)4Heat of Fusion for IceGo Direct® Temperature Probe5Find the Relationship: An Exercise in Graphing AnalysisNo probeware used6Boyle's Law: Pressure-Volume Relationship in GasesGo Direct® Gas Pressure Sensor7Pressure-Temperature Relationship in GasesGo Direct® Gas Pressure Sensor, Go Direct® Temperature Probe8Fractional DistillationGo Direct® Temperature Probe9Evaporation and Intermolecular AttractionsGo Direct® Temperature Probe (2)10Vapor Pressure of LiquidsGo Direct® Gas Pressure Sensor, Go Direct® Temperature Probe11Determining the Concentration of a Solution: Beer's LawGo Direct® Colorimeter12Effect of Temperature on Solubility of a SaltGo Direct® Temperature Probe13Properties of Solutions: Electrolytes and Non-ElectrolytesGo Direct® Conductivity Probe14Conductivity of Solutions: The Effect of ConcentrationGo Direct® Conductivity Probe15Using Freezing Point Depression to Find Molecular WeightGo Direct® Temperature Probe16Energy Content of FoodsGo Direct® Temperature Probe17Energy Content of FuelsGo Direct® Temperature Probe18Additivity of Heats of Reaction: Hess's LawGo Direct® Temperature Probe19Heat of Combustion: MagnesiumGo Direct® Temperature Probe20Chemical Equilibrium: Finding a Constant, KcGo Direct® Colorimeter21Household Acids and BasesGo Direct® pH Sensor22Acid RainGo Direct® pH Sensor23Titration Curves of Strong and Weak Acids and BasesGo Direct® pH Sensor24Acid-Base TitrationGo Direct® pH Sensor, Go Direct® Drop Counter, Precision Volume Dispenser25Titration of a Diprotic Acid: Identifying an UnknownGo Direct® pH Sensor, Go Direct® Drop Counter, Precision Volume Dispenser26Using Conductivity to Find an Equivalence PointGo Direct® Conductivity Probe, Go Direct® Drop Counter, Precision Volume Dispenser27Acid Dissociation Constant, KaGo Direct® pH Sensor28Establishing a Table of Reduction Potentials: Micro-Voltaic CellsGo Direct® Voltage Probe29Lead Storage BatteriesGo Direct® Voltage Probe30Rate Law Determination of the Crystal Violet ReactionGo Direct® Colorimeter31Time-Release Vitamin C TabletsGo Direct® pH Sensor32The Buffer in LemonadeGo Direct® pH Sensor33Determining the Free Chlorine Content of Swimming Pool WaterGo Direct® Colorimeter34Determining the Quantity of Iron in a Vitamin TabletGo Direct® Colorimeter35Determining the Phosphoric Acid Content in Soft DrinksGo Direct® pH Sensor36Microscale Acid-Base TitrationGo Direct® pH Sensor
Middle School Science mit Vernier wurde speziell für Schüler:innenr der 6. bis 8. Klasse geschrieben. Es enthält 38 Experimente in den Bereichen Erdkunde, Biologie und Physik, die zehn verschiedene Sensoren von Vernier nutzen. Ihre Schüler:innen werden diese gut geschriebenen und gut getesteten Wissenschaftsexperimente wirklich genießen!
Physics with Vernier has 35 experiments in mechanics, sound, light, electricity, and magnetism. This book has a wide variety of experiments for Motion Detectors, Force Sensors, Light Sensors, Magnetic Field Sensors, Microphones, Current & Voltage Probes, Photogates, Temperature Probes, and Accelerometers.
Included with Physics with Vernier
Electronic Version
35 ready-to-use student experiments
Access to up-to-date versions of the experiments
Instructions for data collection with Logger Pro 3, Graphical Analysis 4*, LabQuest App, and EasyData
Essential instructor information including teaching tips, suggested answers, and sample data and graphs
Word-processing files of the student experiments, so you can edit the files to match your teaching preferences
Complete equipment and supplies list
A generous site license—buy one book and duplicate the experiments for your class
* Not all experiments are supported in Graphical Analysis 4 at this time. Additional software features and sensor support, including Photogate support, are planned for Spring 2018. Free updates to the experiments, available through your Vernier account, will include instructions for using Go Direct sensors.
Printed Lab Book
When you buy the printed lab book you receive all of the resources listed for the electronic version, plus a printed copy of the book
Mit Hilfe der zweiten Experimentierplatine von Vernier kann mit einfachen elektrischen Schaltkreisen experimentiert werden. Die Platine ist bestückt mit Kondensatoren, Widerständen, einer LED, Schaltern, Batteriehaltern, einem Anschluss für die externe Spannungsversorgung, einer selbstrückstellenden Sicherung, Lämpchensockeln, Anschlussmöglichkeiten für weitere Bauteile und Anschlusspins, die den Anschluss von Krokodilklemmen vereinfachen.
Description
The Vernier Circuit Board 2 is a basic electricity lab on a board. The turret terminals for every component make it easy to connect basic series and parallel circuits, examine the behavior of different components, and investigate RLC circuits. The Vernier Circuit Board 2 includes 10 bulbs, a resettable fuse, three powering options, 10 alligator clip leads, terminal clips to add your own components, and pre-installed components.
Installed Components
R1 and R2–10 Ω resistors rated at 5 W
R3 and R4–51 Ω resistors rated at 2 W
R5 and R6–68 Ω resistors rated at 2 W
R7–22 kΩ resistor rated at 1 W
R8–47 kΩ resistor rated at 1 W
R9–100 kΩ resistor rated at 1 W
R11–4.7 kΩ resistor rated at 1 W
C1–1 µF non-polar capacitor
C2–10 µF non-polar capacitor
3 E-10 lamp sockets
LED and 220 Ω current limiting resistor
L1–5 mH inductor, with powdered iron core in a clip
1 kΩ linear potentiometer
85 dB buzzer
SW2–single-pole, double-throw (SPDT) switch
SW3–single-pole, single-throw (SPST) momentary switch
The Vernier Circuit Board 2 can be used interchangeably with the Vernier Circuit Board in experiments included in Physics with Vernier and Advanced Physics with Vernier–Beyond Mechanics.
Specifications
Size: 10 in. x 6.5 in. (25.5 cm x 16.5 cm)
Mass: ~0.44 kg
Optional power sources:
up to 4 AA batteries, not included
LabQuest Power Supply, not included (or other 5 VDC adapter with center-positive ⅛ inch connector)
DC power supply
Vernier Power Amplifier
Maximum voltage: 10 V
Resettable fuse opens at 0.8 A, but 0.3 A or less is recommended
All parts ROHS compliant
What’s Included
One circuit board
Ten insulated jumper wires fitted with mini-alligator clips
Five #48 lamps rated 0.06 A at 2.0 V (cylindrical body)
Five #50 lamps rated 0.220 A at 7.5 V (round body)
This inductor is used in many physics experiments, including some in our Advanced Physics with Vernier – Beyond Mechanics book. It is an air-core inductor is made from 20 gauge copper wire. It has an inductance of 5 mH and a resistance of 2.4 ohms. It is rated at 200 Watts. A metal core (included) can be added to increase inductance.
For RL or RLC circuit experiments, we recommend using this inductor in combination with our Vernier Circuit Board. The ends of the coil wire are exposed so that you can easily make connections to the Vernier Circuit Board or to other components or sensors.
Advanced Chemistry with Vernier has 35 advanced chemistry experiments designed for use with Vernier data-collection technology. There are four student alternative versions included for each experiment: computer, LabQuest, calculator, and a generic version that covers all platforms. Experiments are included for the Vernier Temperature Probe, pH Sensor, Conductivity Probe, Drop Counter, Colorimeter, Gas Pressure Sensor, Current Probe, ORP Sensor, and Radiation Monitor.
Starting with the 2013–2014 school year, the AP Chemistry Course Description recommended labs have been reduced from 22 to 16 and at least six of the 16 experiments should be an inquiry-based model of instruction. Advanced Chemistry with Vernier provides a variety of experiments for the additional 10 non-inquiry experiments.
Use it in addition to Vernier Chemistry Investigations for Use with AP Chemistry (APCHEM) for a comprehensive set of topics.
The Investigating Chemistry through Inquiry lab book contains 25 inquiry-based chemistry investigations. The book is authored by two long-time chemistry teachers, Donald L. Volz and Ray Smola, who have enjoyed using the inquiry method in their own instruction.
Each experiment includes a preliminary activity, teacher information, sample researchable questions, and sample data for those researchable questions. If you are new to inquiry-based instruction, the extensive Instructor Sections that are included with each investigation will help guide you through the inquiry-based style of chemistry instruction.
Included with Investigating Chemistry through Inquiry
Electronic Version
25 inquiry-based, chemistry investigations
Access to up-to-date versions of the experiments
Essential teacher information for successful inquiry investigations
Suggested researchable questions, sample data, and graphs
A generous site license—buy one book and duplicate the labs for your class
Word-processing files of the student experiments, so you can edit the files to match your teaching preferences
Printed Lab Book
When you buy the printed lab book you receive all of the resources listed for the electronic version, plus a printed copy of the book.
Dieser Spannungsfühler misst das Potential in Gleich- und Wechselstromschaltungen. In Chemie kann er für Spannungsmessungen an verschiedenen elektrochemischen Zellen (z.B. Volta'sche Säulen) eingesetzt werden.
Bereich:-10 bis +10 V
Auflösung:12-bit (LabQuest, LabQuest Mini, LabPro, SensorDAQ): 0,005 V (5 mV)10-bit (CBL, CBL 2): 0,020 V (20 mV)
VP-BTA-Handbuch
Der Hochstromsensor kann Ströme im Bereich von –10 bis +10 A erfassen. Der Sensor verwendet einen Hall-Sensor zum Messen, es wird also kein Widerstand in Ihre Schaltung eingefügt. Mit Abschirmung gegen magnetische Störfelder und auswechselbarer Sicherung.
Bereich:10 A
maximale Eingangsspannung:40 V
Auflösung: 13-bit Auflösung (mit SensorDaq): 2,4 mA 12-bit Auflösung (mit LabQuest, LabQuest Mini, LabPro, Go! Link): 4,9 mA
HCS-BTA-Handbuch
Der differentielle Spannungsfühler ist vor allem für die Erforschung grundlegender Prinzipien der Elektrizität geeignet, einschließlich Parallel- und Serienschaltungen.
Ideal für Messungen in den meisten Batteriestromkreisen.
Kann in Gleich- und Wechselstromkreisen verwendet werden.
In Verbindung mit einem Stromfühler zum Erforschen des Ohm'schen Gesetzes. Der Sensor unterscheidet sich vom normalen Spannungsfühler (bestell-nr. VP-BTA) dadurch, dass keiner der Anschlüsse Massebezug hat.
Bereich:-6,0 bis +6,0 V
EingangsImpedanz:10 MΩ
Auflösung:12-bit (LabQuest, LabQuest Mini, LabPro, Go!Link, SensorDAQ):
3,1 mV 10-bit (CBL, CBL 2, NXT Adapter): 12,5 mV
DVP-BTA-Handbuch
Dieser Stromfühler misst Ströme im Bereich von ±0,6 A in Gleich- und Wechselstromkreisen (Niederspannung). Der Fühler ist ideal für den Einsatz in batteriebetriebenen Schaltungen. Er kann ebenfalls in der Elektrochemie verwendet werden.
Bereich: -0,6 to +0,6 A Sense Resistor: 0,1 Ω
Auflösung:2-bit (LabQuest, LabQuest Mini, LabPro, Go!Link, SensorDAQ): 0,3 mA 10-bit (CBL, CBL 2, NXT Adapter): 1,25 mA
Dieser Leistungssensor ist ideal zur Leistungsmessung von Solarzellen an einem Verbraucher. Er belegt zwei Analogkanäle am Interface (für Strom und Spannung).
Spannung:±30 V
Strom:max. 1000 mA
Handbuch (Englisch)
CHF 234.40*
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