Schott Music

Stadtfeld - My Christmas Time for Piano Sheet Music

Regular price $99.95
Regular price Sale price $99.95

Includes GST

In stock at our warehouse. Order now and it ships in 1–3 business days with tracking.
Not on the Footscray shop floor. We’ll bring it in for you to collect in 1–3 business days.
Quantity

Afterpay and Zip are available at checkout on orders $100–$2,000.

Delivery & collection

Standard shipping $7

Dispatched in 1–3 business days with tracking, then 4–9 business days depending on location.

Free over $150.* Conditions apply.

Express shipping $15

1–3 business days depending on location.

Flat rate Australia-wide. Choose Express at checkout.

Click & Collect Free

From our Footscray showroom

It’s not on the shop floor yet, so we’ll bring it in and email you when it’s ready (usually 1–3 business days).

Not sure it’s the right one? Talk to a player.

View full details

Description

SKU ED23559

The official sheet music edition for the album of the same name My Christmas Time on Sony Classical. Contains atmospheric compositions and free arrangements using traditional Christmas carols from around the world. The focus is on two carols by Michael Praetorius, whose death anniversary in 2021 is the 400th. Easy to medium difficulty - ideal for young people and those returning to the piano and a perfect addition to the standard Christmas piano repertoire.

"The compositions and free arrangements of traditional Christmas carols were created as small, digitally broadcast greetings for the Sundays of Advent in Lockdown 2020.
The beautiful pre-Christmas season spent with my son was the source of inspiration for the cycle My Christmas Time, in which I reminisce about my own childhood."
(Martin Stadtfeld) My Christmas Time Composer: Martin Stadtfeld Publisher: Schott Music Instrument: Piano Format: Piano Solo Pages: 48

Details & dimensions

Brand
Schott Music
Type
Piano
Author
Martin Stadtfeld
Publication
STADTFELD - MY CHRISTMAS TIME FOR PIANO
Catalogue no.
ED23559
ISBN/UPC
842819116509
Weight
0.2 kg